other query modes : |
Identifier query |
Coordinate query |
Criteria query |
Reference query |
Basic query |
Script submission |
TAP |
Output options |
Help |
PSR J0030+0451 , the SIMBAD biblio (422 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.09.26CEST18:31:52 |
Bibcode/DOI | Score |
in Title|Abstract| Keywords |
in a table | in teXt, Caption, ... | Nb occurence | Nb objects in ref |
Citations (from ADS) |
Title | First 3 Authors |
---|---|---|---|---|---|---|---|---|---|
2000ApJ...545.1007L | 36 | K | 26 | 43 | New pulsars from an Arecibo drift scan search. | LOMMEN A.N., ZEPKA A., BACKER D.C., et al. | |||
2000ApJ...545.1015B | 109 | T K | 31 | 16 |
X-rays from the nearby solitary millisecond pulsar PSR J0030+0451: the final ROSAT observations. |
BECKER W., TRUMPER J., LOMMEN A.N., et al. | |||
2001A&A...368..230K | 32 | 32 | No low-frequency turn-over in the spectra of millisecond pulsars. | KUZMIN A.D. and LOSOVSKY B.Y. | |||||
2001A&A...368.1055N | 110 | T K | 77 | 14 |
Scintillation measurements of the millisecond pulsar PSR J0030+0451 and pulsar space velocities. |
NICASTRO L., NIGRO F., D'AMICO N., et al. | |||
2001ApJ...554..316T | 11 | 25 | Pulsed X-ray emission from the fastest millisecond pulsar: PSR B1937+21 with ASCA. | TAKAHASHI M., SHIBATA S., TORII K., et al. | |||||
2001PASJ...53..535S | 7 | 15 | ASCA observation of the millisecond pulsar PSR J2124-3358. | SAKURAI I., KAWAI N., TORII K., et al. | |||||
2001PABei..19...55L | 22 | 0 | Progress on radio pulsar search. | LIANDE P. | |||||
2002A&A...387..993P | 1 | 42 | 242 | Re-examining the X-ray versus spin-down luminosity correlation of rotation powered pulsars. | POSSENTI A., CERUTTI R., COLPI M., et al. | ||||
2002ApJ...564..333M | 30 | 17 | PSR J1740+1000: a young pulsar well out of the galactic plane. | McLAUGHLIN M.A., ARZOUMANIAN Z., CORDES J.M., et al. | |||||
2002ApJ...569..894Z | 4 | 7 | 86 | X-radiation from the millisecond pulsar J0437-4715. | ZAVLIN V.E., PAVLOV G.G., SANWAL D., et al. | ||||
2002ApJ...576..366H | 5 | 6 | 96 | Regimes of pulsar pair formation and particle energetics. | HARDING A.K., MUSLIMOV A.G. and ZHANG B. | ||||
2002ApJ...581..470G | 38 | 110 | Chandra study of a complete sample of millisecond pulsars in 47 Tucanae and NGC 6397. | GRINDLAY J.E., CAMILO F., HEINKE C.O., et al. | |||||
2002ARep...46..451K ![]() |
542 | 2 | A comparative analysis of the integrated radio luminosities of normal and millisecond pulsars. | KUZ'MIN A.D. | |||||
2003A&A...400..265K | 111 | T K | 12 | 15 |
Deep BVR imaging of the field of the millisecond pulsar PSR J0030+0451 with the VLT. |
KOPTSEVICH A.B., LUNDQVIST P., SERAFIMOVICH N.I., et al. | |||
2003A&A...406..245S | 13 | 8 | Deep optical observations of the fields of two nearby millisecond pulsars with the VLT. | SUTARIA F.K., RAY A., REISENEGGER A., et al. | |||||
2003AstL...29..502M ![]() |
156 | 7 | On the mechanism of X-ray emission from radio pulsars. | MALOV I.F. | |||||
2004ApJ...601.1038W | 15 | 8 | Spectral properties, generation order parameters, and luminosities for spin-powered X-ray pulsars. | WANG W. and ZHAO Y. | |||||
2004ApJ...602..327K | 3 | 8 | 78 | Ultraviolet emission from the millisecond pulsar J0437-4715. | KARGALTSEV O., PAVLOV G.G. and ROMANI R.W. | ||||
2004ApJ...609..354M | 22 | 14 | Polarization observations of nine southern millisecond pulsars. | MANCHESTER R.N. and HAN J.L. | |||||
2004ApJ...612L..49P | 6 | 15 | A first XMM-Newton look at the relativistic double pulsar PSR J0737-3039. | PELLIZZONI A., DE LUCA A., MEREGHETTI S., et al. | |||||
2004MNRAS.352.1439H ![]() |
184 | 167 | The Parkes multibeam pulsar survey - IV. Discovery of 180 pulsars and parameters for 281 previously known pulsars. | HOBBS G., FAULKNER A., STAIRS I.H., et al. | |||||
2005ApJ...622..531H | 2 | 28 | 143 | High-energy emission from millisecond pulsars. | HARDING A.K., USOV V.V. and MUSLIMOV A.G. | ||||
2005ApJ...625..291F | 1 | 15 | 54 | Rotochemical heating in millisecond pulsars: formalism and nonsuperfluid case. | FERNANDEZ R. and REISENEGGER A. | ||||
2005ApJ...630.1029B | 3 | 12 | 73 | An X-ray variable millisecond pulsar in the globular cluster 47 Tucanae: closing the link to low-mass X-ray binaries. | BOGDANOV S., GRINDLAY J.E. and VAN DEN BERG M. | ||||
2006A&A...448L..13H | 37 | K | 23 | 25 | Searches for diffuse X-ray emission around millisecond pulsars: an X-ray nebula associated with PSR J2124-3358. | HUI C.Y. and BECKER W. | |||
2006ApJ...638..951Z | 1 | 14 | 48 | XMM-Newton observations of four millisecond pulsars. | ZAVLIN V.E. | ||||
2006ApJ...642.1012L | 112 | T K | 29 | 35 |
The parallax and proper motion of PSR J0030+0451. |
LOMMEN A.N., KIPPHORN R.A., NICE D.J., et al. | |||
2006ApJ...646.1104B | 1 | 46 | 116 | Chandra X-ray observations of 19 millisecond pulsars in the globular cluster 47 Tucanae. | BOGDANOV S., GRINDLAY J.E., HEINKE C.O., et al. | ||||
2006ApJ...648L..55B | 9 | 15 | X-rays from radio millisecond pulsars: comptonized thermal radiation. | BOGDANOV S., GRINDLAY J.E. and RYBICKI G.B. | |||||
2006ChJAA...6..237Y ![]() |
15 | D | 422 | 14 | Circular polarization in pulsar integrated profiles: updates. | YOU X.-P. and HAN J.-L. | |||
2006APh....25..212X | 31 | 14 | To probe into pulsars interior through gravitational waves. | XU R.X. | |||||
2007ApJ...660..587C | 41 | 13 | Variability of 19 millisecond pulsars in 47 Tucanae with Chandra HRC-S. | CAMERON P.B., RUTLEDGE R.E., CAMILO F., et al. | |||||
2007MNRAS.379..282L | 15 | D | 1 | 59 | 11 | PSR J1453+1902 and the radio luminosities of solitary versus binary millisecond pulsars. | LORIMER D.R., McLAUGHLIN M.A., CHAMPION D.J., et al. | ||
2007ApJ...664.1072P | 23 | 13 | X-ray emission from the planet pulsar B1257+12. | PAVLOV G.G., KARGALTSEV O., GARMIRE G.P., et al. | |||||
2007ApJ...666.1165Z | 19 | 19 | High-energy properties of pulsed emission from millisecond pulsars. | ZHANG L., FANG J. and CHEN S.B. | |||||
2007ApJ...670..668B | 82 | X | 2 | 6 | 84 | Constraints on neutron star properties from X-ray observations of millisecond pulsars. | BOGDANOV S., RYBICKI G.B. and GRINDLAY J.E. | ||
2007ApJ...671..907Y | 1 | 14 | 39 | An improved solar wind electron density model for pulsar timing. | YOU X.P., HOBBS G.B., COLES W.A., et al. | ||||
2008ApJ...672.1137R | 38 | X | 1 | 33 | 27 | Discovery of an isolated compact object at high galactic latitude. | RUTLEDGE R.E., FOX D.B. and SHEVCHUK A.H. | ||
2008ApJ...680..654P | 76 | X | 2 | 13 | 8 | The very soft X-ray spectrum of the double pulsar system J0737-3039. | POSSENTI A., REA N., McLAUGHLIN M.A., et al. | ||
2008A&A...489..849C ![]() |
152 | X C | 3 | 319 | 85 | A revised catalogue of EGRET γ-ray sources. | CASANDJIAN J.-M. and GRENIER I.A. | ||
2008A&A...490..179B | 15 | D | 1 | 42 | 19 | Densities and filling factors of the diffuse ionized gas in the Solar neighbourhood. | BERKHUIJSEN E.M. and MUELLER P. | ||
2008ApJ...689..407B | 784 | K A | S X C | 19 | 4 | 31 | Thermal x-rays from millisecond pulsars: constraining the fundamental properties of neutron stars. | BOGDANOV S., GRINDLAY J.E. and RYBICKI G.B. | |
2009ApJS..183...46A ![]() |
16 | D | 1 | 210 | 495 | Fermi/Large Area Telescope bright gamma-ray source list. | ABDO A.A., ACKERMANN M., AJELLO M., et al. | ||
2009ApJ...699.1171A | 1168 | T K A | X C F | 28 | 13 | 34 |
Pulsed gamma rays from the millisecond pulsar J0030+0451 with the Fermi Large Area Telescope. |
ABDO A.A., ACKERMANN M., ATWOOD W.B., et al. | |
2009ApJ...700L.127A | 17 | D | 1 | 50 | 214 | Milagro observations of Multi-TeV emission from galactic sources in the Fermi bright source list. | ABDO A.A., ALLEN B.T., AUNE T., et al. | ||
2009ApJ...702..692K | 38 | X | 1 | 29 | 29 | New limits on radio emission from X-ray dim isolated neutron stars. | KONDRATIEV V.I., McLAUGHLIN M.A., LORIMER D.R., et al. | ||
2009Sci...325..848A | 6 | 16 | 204 | A population of gamma-ray millisecond pulsars seen with the Fermi Large Array Telescope. | ABDO A.A., ACKERMANN M., AJELLO M., et al. | ||||
2009ApJ...703.1557B | 1706 | T K A | X C F | 42 | 5 | 53 |
Deep XMM-Newton spectroscopic and timing observations of the isolated radio millisecond pulsar PSR J0030+0451. |
BOGDANOV S. and GRINDLAY J.E. | |
2009ApJ...706L...7U ![]() |
15 | D | 1 | 216 | 7 | The Fermi/LAT sky as seen by INTEGRAL/IBIS. | UBERTINI P., SGUERA V., STEPHEN J.B., et al. | ||
2009MNRAS.400..805L | 44 | X | 1 | 9 | 118 | Generic tests of the existence of the gravitational dipole radiation and the variation of the gravitational constant. | LAZARIDIS K., WEX N., JESSNER A., et al. | ||
2009ApJ...707..800V | 323 | D | X C F | 7 | 15 | 100 | Probing millisecond pulsar emission geometry using light curves from the Fermi/Large Area Telescope. | VENTER C., HARDING A.K. and GUILLEMOT L. | |
2009ApJ...706.1163L | 15 | D | 1 | 34 | 38 | X-ray and radio timing of the pulsar in 3C 58. | LIVINGSTONE M.A., RANSOM S.M., CAMILO F., et al. | ||
2010ApJ...709L...6A | 15 | D | 1 | 40 | 12 | Observation of TeV gamma rays from the Fermi bright galactic sources with the Tibet air shower array. | AMENOMORI M., BI X.J., CHEN D., et al. | ||
2010ApJ...709..241B ![]() |
77 | C | 1 | 96 | 40 | A Chandra X-ray observatory study of PSR J1740-5340 and candidate millisecond pulsars in the globular cluster NGC 6397. | BOGDANOV S., VAN DEN BERG M., HEINKE C.O., et al. | ||
2010ApJ...710..828A | 92 | D | X | 3 | 33 | 9 | Search for very high energy gamma-ray emission from pulsar-pulsar wind nebula systems with the MAGIC telescope. | ANDERHUB H., ANTONELLI L.A., ANTORANZ P., et al. | |
2010ApJS..187..460A | 94 | D | C | 9 | 90 | 455 | The first Fermi Large Area Telescope catalog of gamma-ray pulsars. | ABDO A.A., ACKERMANN M., AJELLO M., et al. | |
2010ApJ...715..335K | 15 | D | 1 | 87 | 25 | Millisecond pulsar ages: implications of binary evolution and a maximum spin limit. | KIZILTAN B. and THORSETT S.E. | ||
2010ApJ...715.1318T | 15 | D | 1 | 47 | 38 | Pulsar high energy emissions from outer gap accelerator closed by a magnetic pair-creation process. | TAKATA J., WANG Y. and CHENG K.S. | ||
2010ApJS..188..405A ![]() |
15 | D | 1 | 1514 | 938 | Fermi Large Area Telescope First Source Catalog. | ABDO A.A., ACKERMANN M., AJELLO M., et al. | ||
2010MNRAS.405..509D | 39 | X | 1 | 10 | 23 | Rotational asymmetry of pulsar profiles. | DYKS J., WRIGHT G.A.E. and DEMOREST P. | ||
2010MNRAS.405..564V | 15 | D | 1 | 60 | 38 | Lutz-Kelker bias in pulsar parallax measurements. | VERBIEST J.P.W., LORIMER D.R. and McLAUGHLIN M.A. | ||
2010ApJ...718.1400F | 15 | D | 1 | 31 | 48 | Detection, localization, and characterization of gravitational wave bursts in a pulsar timing array. | FINN L.S. and LOMMEN A.N. | ||
2010ApJ...720..178W | 92 | D | F | 1 | 46 | 35 | Gamma-ray spectral properties of mature pulsars: a two-layer model. | WANG Y., TAKATA J. and CHENG K.S. | |
2010MNRAS.406.2671D | 385 | A | D | S X C | 9 | 12 | 24 | The annular gap model for γ-ray emission from young and millisecond pulsars. | DU Y.J., QIAO G.J., HAN J.L., et al. |
2008Ap.....51..403S | 15 | D | 2 | 15 | 0 | Spin-down of millisecond pulsars owing to gravitational wave emission. | SEDRAKIAN D.M., HAYRAPETYAN M.V. and SEDRAKIAN L.R. | ||
2010ApJ...724.1316G | 38 | X | 1 | 19 | 28 | Modeling the surface X-ray emission and viewing geometry of PSR J0821-4300 in Puppis A. | GOTTHELF E.V., PERNA R. and HALPERN J.P. | ||
2010A&A...522A..16G | 39 | X | 1 | 8 | 25 | Internal heating of old neutron stars: contrasting different mechanisms. | GONZALEZ D. and REISENEGGER A. | ||
2011ApJ...726L..10H | 42 | X | 1 | 6 | 41 | Pulsar pair cascades in a distorted magnetic dipole field. | HARDING A.K. and MUSLIMOV A.G. | ||
2011ApJ...726...35A | 15 | D | 3 | 77 | 58 | Fermi-LAT search for pulsar wind nebulae around gamma-ray pulsars. | ACKERMANN M., AJELLO M., BALDINI L., et al. | ||
2011ApJ...730...17B | 15 | D | 1 | 30 | 16 | Optimizing pulsar timing arrays to maximize gravitational wave single-source detection: a first cut. | BURT B.J., LOMMEN A.N. and FINN L.S. | ||
2011AJ....141..165A | 15 | D | 1 | 48 | 9 | The age of the local interstellar bubble. | ABT H.A. | ||
2011MNRAS.412.1870P | 249 | D | S X F | 5 | 12 | 35 | A unified polar cap/striped wind model for pulsed radio and gamma-ray emission in pulsars. | PETRI J. | |
2011ApJ...733...82M | 15 | D | 3 | 61 | 54 | A multiwavelength study on the high-energy behavior of the Fermi/LAT pulsars. | MARELLI M., DE LUCA A. and CARAVEO P.A. | ||
2011MNRAS.414...50D | 15 | D | 1 | 8 | 14 | Pulsar timing array observations of gravitational wave source timing parallax. | DENG X. and FINN L.S. | ||
2011ApJ...736..127W | 77 | X | 2 | 18 | 18 | Death line of gamma-ray pulsars with outer gaps. | WANG R.-B. and HIROTANI K. | ||
2009RAA.....9.1241W | 15 | D | 1 | 50 | 3 | Detectability of rotation-powered pulsars in future hard X-ray surveys. | WANG W. | ||
2011PABei..29..323Z | 31 | 0 | Research on X-ray pulsar navigation sources. | ZHAO C.-S., CHEN D., CAI H.-B., et al. | |||||
2011PABei..29..334Z | 31 | 0 | Research on X-ray pulsar navigation sources. | ZHAO C.-S., CHEN D., CAI H.-B., et al. | |||||
2011MNRAS.416.1514R | 15 | D | 1 | 35 | 19 | Deep Chandra observations of TeV binaries – II. LS 5039. | REA N., TORRES D.F., CALIANDRO G.A., et al. | ||
2011ApJ...743..102G | 15 | D | 1 | 48 | 65 | High-precision timing of five millisecond pulsars: space velocities, binary evolution, and equivalence principles. | GONZALEZ M.E., STAIRS I.H., FERDMAN R.D., et al. | ||
2011ApJ...743..181H | 80 | X | 2 | 6 | 42 | Pulsar pair cascades in magnetic fields with offset polar caps. | HARDING A.K. and MUSLIMOV A.G. | ||
2012ApJ...744...34V | 55 | D | X | 2 | 21 | 40 | Modeling phase-aligned gamma-ray and radio millisecond pulsar light curves. | VENTER C., JOHNSON T.J. and HARDING A.K. | |
2012MNRAS.419.1752K | 39 | X | 1 | 35 | 39 | The high time resolution universe pulsar survey - IV. Discovery and polarimetry of millisecond pulsars. | KEITH M.J., JOHNSTON S., BAILES M., et al. | ||
2012ApJ...745..100T | 211 | D | X C | 5 | 38 | 30 | X-ray and gamma-ray emissions from rotation powered millisecond pulsars. | TAKATA J., CHENG K.S. and TAAM R.E. | |
2012ApJ...746....6D | 665 | X C | 16 | 9 | 45 | The spectrum of the recycled PSR J0437-4715 and its white dwarf companion. | DURANT M., KARGALTSEV O., PAVLOV G.G., et al. | ||
2012A&A...538A..93Z | 78 | X | 2 | 36 | 27 | Dark matter subhaloes as gamma-ray sources and candidates in the first Fermi-LAT catalogue. | ZECHLIN H.-S., FERNANDES M.V., ELSAESSER D., et al. | ||
2012ApJ...747..121A | 85 | C | 1 | 7 | 110 | Search for dark matter satellites using Fermi-LAT. | ACKERMANN M., ALBERT A., BALDINI L., et al. | ||
2012ApJS..199...31N ![]() |
16 | D | 1 | 2255 | 1282 | Fermi Large Area Telescope second source catalog. | NOLAN P.L., ABDO A.A., ACKERMANN M., et al. | ||
2012MNRAS.422.1160Y | 40 | X | 1 | 10 | 23 | Measurement of the electron density and magnetic field of the solar wind using millisecond pulsars. | YOU X.P., COLES W.A., HOBBS G.B., et al. | ||
2012ApJ...753...83A ![]() |
39 | X | 1 | 668 | 88 | A statistical approach to recognizing source classes for unassociated sources in the first Fermi-LAT catalog. | ACKERMANN M., AJELLO M., ALLAFORT A., et al. | ||
2012MNRAS.423.2642L | 16 | D | 1 | 37 | 34 | The optimal schedule for pulsar timing array observations. | LEE K.J., BASSA C.G., JANSSEN G.H., et al. | ||
2012MNRAS.424...93H | 95 | D | F | 8 | 23 | 63 | Constraining the physics of the r-mode instability in neutron stars with X-ray and ultraviolet observations. | HASKELL B., DEGENAAR N. and HO W.C.G. | |
2012ApJ...755...39V | 16 | D | 1 | 139 | 145 | On pulsar distance measurements and their uncertainties. | VERBIEST J.P.W., WEISBERG J.M., CHAEL A.A., et al. | ||
2012MNRAS.424.2832L ![]() |
16 | D | 1 | 1876 | 43 | Application of the Gaussian mixture model in pulsar astronomy – pulsar classification and candidates ranking for the Fermi 2FGL catalogue. | LEE K.J., GUILLEMOT L., YUE Y.L., et al. | ||
2012ApJ...756...27L ![]() |
16 | D | 1 | 4349 | 64 | Classification of X-ray sources in the XMM-Newton serendipitous source catalog. | LIN D., WEBB N.A. and BARRET D. | ||
2012A&A...544A.108P | 117 | X | 3 | 6 | 8 | X-ray follow-up observations of the two γ-ray pulsars PSR J1459-6053 and PSR J1614-2230. | PANCRAZI B., WEBB N.A., BECKER W., et al. | ||
2013ApJ...762...94D | 141 | K | D | C | 8 | 19 | 291 | Limits on the stochastic gravitational wave background from the north american nanohertz observatory for gravitational waves. | DEMOREST P.B., FERDMAN R.D., GONZALEZ M.E., et al. |
2013MNRAS.429...55V | 514 | X C F | 11 | 2 | 13 | Accelerating pulsar timing data analysis. | VAN HAASTEREN R. | ||
2013MNRAS.429.2569Y | 40 | X | 1 | 7 | 19 | Long-term radio observations of the intermittent pulsar B1931+24. | YOUNG N.J., STAPPERS B.W., LYNE A.G., et al. | ||
2013MNRAS.430..571E | 55 | D | X | 2 | 32 | 39 | Six millisecond pulsars detected by the Fermi Large Area Telescope and the radio/gamma-ray connection of millisecond pulsars. | ESPINOZA C.M., GUILLEMOT L., CELIK O., et al. | |
2013ApJ...768...64H | 16 | D | 1 | 73 | 102 | The correlation between dispersion measure and X-ray column density from radio pulsars. | HE C., NG C.-Y. and KASPI V.M. | ||
2013ApJ...769..119X | 16 | D | 1 | 25 | 5 | Search for gamma-ray emission from four accreting millisecond pulsars with Fermi/LAT. | XING Y. and WANG Z. | ||
2013A&A...554A..62G | 16 | D | 1 | 38 | 24 | Constraining the Galactic millisecond pulsar population using Fermi Large Area Telescope. | GREGOIRE T. and KNOEDLSEDER J. | ||
2013ApJ...770..145D | 55 | D | X | 2 | 14 | 25 | VLBI astrometry of PSR J2222-0137: a pulsar distance measured to 0.4% accuracy. | DELLER A.T., BOYLES J., LORIMER D.R., et al. | |
2013ApJS..208...17A ![]() |
292 | D | X | 8 | 207 | 759 | The second Fermi large area telescope catalog of gamma-ray pulsars. | ABDO A.A., AJELLO M., ALLAFORT A., et al. | |
2014MNRAS.437.2957J | 16 | D | 1 | 41 | 3 | Phase-averaged gamma-ray spectra from rotation-powered millisecond pulsars. | JIANG Z.J., CHEN S.B., LI X., et al. | ||
2014ApJ...784..154B ![]() |
16 | D | 2 | 104 | 62 | A survey for Hα pulsar bow shocks. | BROWNSBERGER S. and ROMANI R.W. | ||
2014MNRAS.439.2033G | 56 | D | X | 2 | 77 | 17 | On the non-detection of γ-rays from energetic millisecond pulsars - dependence on viewing geometry. | GUILLEMOT L. and TAURIS T.M. | |
2014ApJ...785..119A ![]() |
16 | D | 1 | 202 | 131 | Gravitational waves from known pulsars: results from the initial detector era. | AASI J., ABADIE J., ABBOTT B.P., et al. | ||
2014ApJ...787..167N | 16 | D | 1 | 49 | 13 | High-energy emission of the first millisecond pulsar. | NG C.-Y., TAKATA J., LEUNG G.C.K., et al. | ||
2014ApJ...788..141M | 16 | D | 1 | 20 | 19 | Assessing pulsar timing array sensitivity to gravitational wave bursts with memory. | MADISON D.R., CORDES J.M. and CHATTERJEE S. | ||
2014MNRAS.441..757F | 16 | D | 1 | 84 | 13 | A Chandra look at the X-ray faint millisecond pulsars in the globular cluster NGC 6752. | FORESTELL L.M., HEINKE C.O., COHN H.N., et al. | ||
2014ApJS..213....6J | 612 | D | X C | 15 | 46 | 54 | Constraints on the emission geometries and spin evolution of gamma-ray millisecond pulsars. | JOHNSON T.J., VENTER C., HARDING A.K., et al. | |
2014ApJ...790...94B | 41 | X | 1 | 9 | 24 | Modeling the x-rays from the central compact object PSR J1852+0040 in Kesteven 79: evidence for a strongly magnetized neutron star. | BOGDANOV S. | ||
2014ApJ...794..141A | 121 | X | 3 | 21 | 113 | Gravitational waves from individual supermassive black hole binaries in circular orbits: limits from the north american nanohertz observatory for gravitational waves. | ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al. | ||
2014ApJ...794..163C | 16 | D | 1 | 18 | 3 | Optimization of NANOGrav's time allocation for maximum sensitivity to single sources. | CHRISTY B., ANELLA R., LOMMEN A., et al. | ||
2014ApJ...795...96W | 159 | C F | 4 | 9 | 16 | A coherent method for the detection and parameter estimation of continuous gravitational wave signals using a pulsar timing array. | WANG Y., MOHANTY S.D. and JENET F.A. | ||
2014ApJ...796...14C | 16 | D | 1 | 60 | 60 | Diffuse γ-ray emission from galactic pulsars. | CALORE F., DI MAURO M. and DONATO F. | ||
2014MNRAS.444.3863L | 200 | X C | 4 | 4 | 11 | Bayesian estimation of non-Gaussianity in pulsar timing analysis. | LENTATI L., HOBSON M.P. and ALEXANDER P. | ||
2014ARA&A..52..211C | 79 | X | 2 | 53 | 78 | Gamma-ray pulsar revolution. | CARAVEO P.A. | ||
2015ApJS..217....2M ![]() |
16 | D | 2 | 2187 | 42 | Refining the associations of the Fermi large area telescope source catalogs. | MASSARO F., D'ABRUSCO R., LANDONI M., et al. | ||
2015MNRAS.447.2159L | 302 | D | X C F | 6 | 2 | 11 | Generative pulsar timing analysis. | LENTATI L., ALEXANDER P. and HOBSON M.P. | |
2015ApJ...803...83B | 80 | X | 2 | 28 | 11 | A broadband radio study of the average profile and giant pulses from PSR B1821-24A. | BILOUS A.V., PENNUCCI T.T., DEMOREST P., et al. | ||
2015ApJ...804..133A | 16 | D | 1 | 32 | 9 | A northern sky survey for point-like sources of EeV neutral particles with the telescope array experiment. | ABBASI R.U., ABE M., ABU-ZAYYAD T., et al. | ||
2015ApJS..218...23A ![]() |
16 | D | 1 | 3129 | 1411 | Fermi Large Area Telescope third source catalog. | ACERO F., ACKERMANN M., AJELLO M., et al. | ||
2015ApJ...808..156S | 217 | D | X C | 5 | 49 | 41 | Pulsar observations using the first station of the long wavelength array and the LWA pulsar data archive. | STOVALL K., RAY P.S., BLYTHE J., et al. | |
2015ApJ...810..150A | 57 | D | X | 2 | 21 | 26 | NANOGrav constraints on gravitational wave bursts with memory. | ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al. | |
2015ApJ...813...65N | 221 | D | X C | 5 | 39 | 177 | The NANOGrav nine-year data set: observations, arrival time measurements, and analysis of 37 millisecond pulsars. | NANOGRAV COLLABORATION, ARZOUMANIAN Z., BRAZIER A., et al. | |
2015MNRAS.453..828K | 96 | D | F | 2 | 20 | 12 | Low-frequency spectral turn-overs in millisecond pulsars studied from imaging observations. | KUNIYOSHI M., VERBIEST J.P.W., LEE K.J., et al. | |
2015MNRAS.453.2599V ![]() |
96 | D | F | 3 | 81 | 8 | A systematic synchro-curvature modelling of pulsar γ-ray spectra unveils hidden trends. | VIGANO D., TORRES D.F. and MARTIN J. | |
2015ApJ...814..128K ![]() |
136 | D | X C | 3 | 89 | 17 | Timing gamma-ray pulsars with the Fermi Large Area Telescope: timing noise and astrometry. | KERR M., RAY P.S., JOHNSTON S., et al. | |
2016A&A...585A.128K | 586 | D | O X C | 14 | 79 | 87 | A LOFAR census of millisecond pulsars. | KONDRATIEV V.I., VERBIEST J.P.W., HESSELS J.W.T., et al. | |
2016ApJ...817...70T | 139 | X C | 2 | 1 | 17 | Detecting eccentric supermassive black hole binaries with pulsar timing arrays: resolvable source strategies. | TAYLOR S.R., HUERTA E.A., GAIR J.R., et al. | ||
2016MNRAS.455.1665B | 84 | F | 1 | 46 | 158 | European Pulsar Timing Array limits on continuous gravitational waves from individual supermassive slack hole binaries. | BABAK S., PETITEAU A., SESANA A., et al. | ||
2016ApJ...818...92M | 219 | D | X | 6 | 63 | 36 | The NANOGrav nine-year data set: astrometric measurements of 37 millisecond pulsars. | MATTHEWS A.M., NICE D.J., FONSECA E., et al. | |
2016MNRAS.455.4249T | 97 | D | F | 2 | 60 | 13 | Probing gamma-ray emissions of Fermi-LAT pulsars with a non-stationary outer gap model. | TAKATA J., NG C.W. and CHENG K.S. | |
2016ApJ...818..166L | 16 | D | 2 | 38 | 30 | The NANOGrav nine-year data set: monitoring interstellar scattering delays. | LEVIN L., McLAUGHLIN M.A., JONES G., et al. | ||
2016MNRAS.456.2196B | 16 | D | 1 | 62 | 40 | LEAP: the Large European Array for Pulsars. | BASSA C.G., JANSSEN G.H., KARUPPUSAMY R., et al. | ||
2016ApJ...819..155L | 16 | D | 3 | 37 | 23 | The NANOGrav nine-year data set: noise budget for pulsar arrival times on intraday timescales. | LAM M.T., CORDES J.M., CHATTERJEE S., et al. | ||
2016ApJ...820....8S ![]() |
16 | D | 1 | 3047 | 91 | Classification and ranking of Fermi LAT gamma-ray sources from the 3FGL catalog using machine learning techniques. | SAZ PARKINSON P.M., XU H., YU P.L.H., et al. | ||
2016ApJ...821...13A | 28 | D | 1 | 20 | 257 | The NANOGrav nine-year data set: limits on the isotropic stochastic gravitational wave background. | ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al. | ||
2016AstL...42..173Z ![]() |
112 | 1 | Probing Milky Way's hot gas halo density distribution using the dispersion measure of pulsars. | ZHEZHER Y.V., NUGAEV E.Y. and RUBTSOV G.I. | |||||
2016MNRAS.457.4421C | 97 | D | F | 4 | 42 | 31 | The noise properties of 42 millisecond pulsars from the European Pulsar Timing Array and their impact on gravitational-wave searches. | CABALLERO R.N., LEE K.J., LENTATI L., et al. | |
2016MNRAS.458..868L | 16 | D | 2 | 35 | 24 | Prospects for high-precision pulsar timing with the new Effelsberg PSRIX backend. | LAZARUS P., KARUPPUSAMY R., GRAIKOU E., et al. | ||
2016MNRAS.458.1267V | 103 | D | X | 3 | 51 | 323 | The International Pulsar Timing Array: First data release. | VERBIEST J.P.W., LENTATI L., HOBBS G., et al. | |
2016MNRAS.458.2161L | 180 | D | X | 5 | 49 | 80 | From spin noise to systematics: stochastic processes in the first International Pulsar Timing Array data release. | LENTATI L., SHANNON R.M., COLES W.A., et al. | |
2016MNRAS.458.3341D ![]() |
426 | D | X C | 10 | 80 | 351 | High-precision timing of 42 millisecond pulsars with the European Pulsar Timing Array. | DESVIGNES G., CABALLERO R.N., LENTATI L., et al. | |
2016ARA&A..54..401O | 51 | X | 1 | 85 | 918 | Masses, radii, and the equation of state of neutron stars. | OZEL F. and FREIRE P. | ||
2016ApJ...829..119F ![]() |
16 | D | 4 | 321 | 18 | Known pulsars identified in the GMRT 150 MHz all-sky survey. | FRAIL D.A., JAGANNATHAN P., MOOLEY K.P., et al. | ||
2016MNRAS.461.1317Z | 16 | D | 1 | 31 | 18 | Detection and localization of continuous gravitational waves with pulsar timing arrays: the role of pulsar terms. | ZHU X.-J., WEN L., XIONG J., et al. | ||
2016ApJ...831..143X | 16 | D | 2 | 44 | 4 | Fermi study of gamma-ray millisecond pulsars: the spectral shape and pulsed emission from J0614-3329 up to 60 GeV. | XING Y. and WANG Z. | ||
2016ApJ...832...92O | 94 | X | 2 | 4 | 54 | Measuring neutron star radii via pulse profile modeling with NICER. | OZEL F., PSALTIS D., ARZOUMANIAN Z., et al. | ||
2016ApJ...832..107B | 41 | X | 1 | 5 | 4 | The effect of an offset polar cap dipolar magnetic field on the modeling of the Vela pulsar's γ-ray light curves. | BARNARD M., VENTER C. and HARDING A.K. | ||
2017ApJ...834...35L | 181 | D | S X | 4 | 37 | 23 | The NANOGrav nine-year data set: excess noise in millisecond pulsar arrival times. | LAM M.T., CORDES J.M., CHATTERJEE S., et al. | |
2017ApJ...835...29Y | 18 | D | 1 | 301 | 678 | A new electron-density model for estimation of pulsar and FRB distances. | YAO J.M., MANCHESTER R.N. and WANG N. | ||
2016MNRAS.463.2612G | 42 | X | 1 | 9 | 15 | The NuSTAR view of the non-thermal emission from PSR J0437-4715. | GUILLOT S., KASPI V.M., ARCHIBALD R.F., et al. | ||
2017ApJ...839...12A ![]() |
16 | D | 1 | 208 | 127 | First search for gravitational waves from known pulsars with Advanced LIGO. | ABBOTT B.P., ABBOTT R., ABBOTT T.D., et al. | ||
2017ApJ...841..125J | 470 | D | X C | 11 | 39 | 75 | The NANOGrav nine-year data set: measurement and analysis of variations in dispersion measures. | JONES M.L., McLAUGHLIN M.A., LAM M.T., et al. | |
2017RAA....17...19W | 16 | D | 2 | 16 | 1 | Statistical analyses for NANOGrav 5-year timing residuals. | WANG Y., CORDES J.M., JENET F.A., et al. | ||
2017MNRAS.466.2560S | 16 | D | 1 | 32 | 8 | X-ray bounds on the r-mode amplitude in millisecond pulsars. | SCHWENZER K., BOZTEPE T., GUVER T., et al. | ||
2017MNRAS.466.4954V | 128 | X C | 2 | 1 | 5 | Taming outliers in pulsar-timing data sets with hierarchical likelihoods and Hamiltonian sampling. | VALLISNERI M. and VAN HAASTEREN R. | ||
2017MNRAS.467.4711J | 16 | D | 1 | 118 | 1 | Dark neutron stars. | JONES P.B. | ||
2017MNRAS.469.1065D | 91 | X | 2 | 4 | 39 | SPIDERS: selection of spectroscopic targets using AGN candidates detected in all-sky X-ray surveys. | DWELLY T., SALVATO M., MERLONI A., et al. | ||
2017ApJ...847...25S | 41 | X | 1 | 9 | 8 | A multiwavelength study of nearby millisecond pulsar PSR J1400-1431: improved astrometry and an optical detection of its cool white dwarf companion. | SWIGGUM J.K., KAPLAN D.L., McLAUGHLIN M.A., et al. | ||
2018ApJS..234...11H ![]() |
17 | D | 3 | 495 | 70 | Pulsar rotation measures and large-scale magnetic field reversals in the Galactic disk. | HAN J.L., MANCHESTER R.N., VAN STRATEN W., et al. | ||
2018ApJS..235...37A | 444 | D | X C F | 9 | 47 | 434 | The NANOGrav 11-year data set: high-precision timing of 45 millisecond pulsars. | ARZOUMANIAN Z., BRAZIER A., BURKE-SPOLAOR S., et al. | |
2018ApJ...859...47A | 69 | D | X | 2 | 35 | 365 | The NANOGrav 11 year data set: pulsar-timing constraints on the stochastic gravitational-wave background. | ARZOUMANIAN Z., BAKER P.T., BRAZIER A., et al. | |
2018MNRAS.478.2359L | 17 | D | 1 | 65 | 7 | High-precision pulsar timing and spin frequency second derivatives. | LIU X.J., BASSA C.G. and STAPPERS B.W. | ||
2018ApJ...862...47G | 393 | D | S X C | 8 | 30 | 10 | The NANOGrav 11 yr data set: Arecibo Observatory polarimetry and pulse microcomponents. | GENTILE P.A., McLAUGHLIN M.A., DEMOREST P.B., et al. | |
2018A&A...615A..73R | 125 | X C | 2 | 15 | 10 | A new X-ray look into four old pulsars. | RIGOSELLI M. and MEREGHETTI S. | ||
2018ApJ...863..199G | 84 | X | 2 | 16 | 10 | Population syntheses of millisecond pulsars from the galactic disk and bulge. | GONTHIER P.L., HARDING A.K., FERRARA E.C., et al. | ||
2018ApJ...864...23L | 17 | D | 1 | 85 | 32 | X-ray census of millisecond pulsars in the galactic field. | LEE J., HUI C.Y., TAKATA J., et al. | ||
2018MNRAS.479.3393W | 435 | D | X F | 10 | 30 | 1 | The decomposition of temporal variations of pulsar dispersion measures. | WANG P.F. and HAN J.L. | |
2018ApJ...868...33L | 142 | D | X | 4 | 50 | 5 | Optimizing pulsar timing array observational cadences for sensitivity to low-frequency gravitational-wave sources. | LAM M.T. | |
2018ApJ...868..122B | 17 | D | 2 | 41 | 4 | The NANOGrav 11-year data set: pulse profile variability. | BROOK P.R., KARASTERGIOU A., McLAUGHLIN M.A., et al. | ||
2018A&A...619A..23C ![]() |
17 | D | 1 | 1350 | ~ | A MST catalogue of γ-ray source candidates above 10 GeV and at Galactic latitudes higher than 20°. | CAMPANA R., MASSARO E. and BERNIERI E. | ||
2018MNRAS.481.2249C | 100 | D | F | 4 | 27 | 2 | Gravitational wave detection from OJ 287 via a pulsar timing array. | CHEN J.-W. and ZHANG Y. | |
2018MNRAS.481.3966B | 17 | D | 1 | 154 | 15 | Bayesian model comparison and analysis of the Galactic disc population of gamma-ray millisecond pulsars. | BARTELS R.T., EDWARDS T.D.P. and WENIGER C. | ||
2019MNRAS.483.1796C | 766 | A | D | X C | 18 | 4 | 3 | Revisiting of pulsed γ-ray properties of millisecond pulsars in the pulsar striped winds. | CHANG S. and ZHANG L. |
2019MNRAS.484.3646S ![]() |
17 | D | 1 | 182 | 65 | Low-frequency Faraday rotation measures towards pulsars using LOFAR: probing the 3D Galactic halo magnetic field. | SOBEY C., BILOUS A.V., GRIESSMEIER J.-M., et al. | ||
2019ApJ...872..150M | 656 | D | X C | 15 | 46 | 7 | The NANOGrav 11 yr data set: solar wind sounding through pulsar timing. | MADISON D.R., CORDES J.M., ARZOUMANIAN Z., et al. | |
2019ApJ...872..193L | 17 | D | 3 | 48 | 30 | The NANOGrav 12.5 yr data set: the frequency dependence of pulse jitter in precision millisecond pulsars. | LAM M.T., McLAUGHLIN M.A., ARZOUMANIAN Z., et al. | ||
2018RAA....18...89M | 17 | D | 1 | 162 | ~ | Radio pulsars with expected gamma radiation and gamma-ray pulsars as pulsating radio emitters. | MALOV I.F. and TIMIRKEEVA M.A. | ||
2019RAA....19...20H | 17 | D | 1 | 38 | ~ | The role of FAST in pulsar timing arrays. | HOBBS G., DAI S., MANCHESTER R.N., et al. | ||
2019RAA....19...21W | 17 | D | 1 | 19 | ~ | How can FAST improve study of the pulsar emission mechanism and magnetospheric dynamics? | WANG H.-G., QIAO G.-J., DU Y.-J., et al. | ||
2019MNRAS.485.5319M | 17 | D | 1 | 61 | ~ | On X-ray emission of radio pulsars. | MALOV I.F. and TIMIRKEEVA M.A. | ||
2019MNRAS.485.5363G | 56 | X | 1 | 7 | 95 | Equation of state sensitivities when inferring neutron star and dense matter properties. | GREIF S.K., RAAIJMAKERS G., HEBELER K., et al. | ||
2019ApJ...878L..22R | 43 | X | 1 | 6 | ~ | Discovery of soft X-ray pulsations from PSR J1231-1411 using NICER. | RAY P.S., GUILLOT S., RANSOM S.M., et al. | ||
2019ApJ...879...10A ![]() |
17 | D | 1 | 225 | 87 | Searches for gravitational waves from known pulsars at two harmonics in 2015-2017 LIGO data. | ABBOTT B.P., ABBOTT R., ABBOTT T.D., et al. | ||
2019A&A...626A.104S ![]() |
17 | D | 1 | 326 | 61 | The LOFAR Tied-Array All-Sky Survey (LOTAAS): Survey overview and initial pulsar discoveries. | SANIDAS S., COOPER S., BASSA C.G., et al. | ||
2019RAA....19..100G | 1379 | D | X C | 32 | 7 | ~ | The application of co-integration theory in ensemble pulsar timescale algorithm. | GAO F., TONG M.-L., GAO Y.-P., et al. | |
2019A&A...627A..13B ![]() |
145 | D | O X | 4 | 254 | 20 | Second AGILE catalogue of gamma-ray sources. | BULGARELLI A., FIORETTI V., PARMIGGIANI N., et al. | |
2019A&A...627A.141W | 128 | X | 3 | 9 | ~ | Thermal X-ray emission identified from the millisecond pulsar PSR J1909-3744. | WEBB N.A., LEAHY D., GUILLOT S., et al. | ||
2019MNRAS.488.2190L | 17 | D | 1 | 50 | ~ | Correlated timing noise and high-precision pulsar timing: measuring frequency second derivatives as an example. | LIU X.J., KEITH M.J., BASSA C.G., et al. | ||
2019ApJ...880..116A | 215 | X F | 4 | 45 | 119 | The NANOGrav 11 yr data set: limits on Gravitational Waves from individual supermassive black hole binaries. | AGGARWAL K., ARZOUMANIAN Z., BAKER P.T., et al. | ||
2019ApJ...881...73W | 128 | X | 3 | 4 | ~ | Optimal neutron-star mass ranges to constrain the equation of state of nuclear matter with electromagnetic and gravitational-wave observations. | WEIH L.R., MOST E.R. and REZZOLLA L. | ||
2019MNRAS.488.4288C | 187 | D | X | 5 | 22 | ~ | Modelling pulsed gamma-ray emissions from millisecond pulsars with double peaks. | CHANG S., ZHANG L., LI X., et al. | |
2019ApJ...887L..21R | 2602 | T A | X C | 58 | 13 | 849 |
A NICER view of PSR J0030+0451 millisecond pulsar parameter estimation. |
RILEY T.E., WATTS A.L., BOGDANOV S., et al. | |
2019ApJ...887L..22R | 1973 | T A | S X C | 43 | 5 | 160 |
A NICER view of PSR J0030+0451 implications for the dense matter equation of state. |
RAAIJMAKERS G., RILEY T.E., WATTS A.L., et al. | |
2019ApJ...887L..23B | 1484 | T A | S X C | 32 | 8 | 92 |
A NICER view of PSR J0030+0451 evidence for a global-scale multipolar magnetic field. |
BILOUS A.V., WATTS A.L., HARDING A.K., et al. | |
2019ApJ...887L..24M | 4764 | T A | S X C | 107 | 9 | 891 |
PSR J0030+0451 mass and radius from NICER data and implications for the properties of Neutron Star matter. |
MILLER M.C., LAMB F.K., DITTMANN A.J., et al. | |
2019ApJ...887L..25B | 1756 | A | D | S X C | 40 | 9 | 103 | Constraining the neutron star mass-radius relation and dense matter equation of state with NICER. I. The millisecond pulsar X-ray data set. | BOGDANOV S., GUILLOT S., RAY P.S., et al. |
2019ApJ...887L..26B | 198 | X | 4 | 3 | 86 | Constraining the neutron star mass-radius relation and dense matter equation of state with NICER. II. Emission from hot spots on a rapidly rotating neutron star. | BOGDANOV S., LAMB F.K., MAHMOODIFAR S., et al. | ||
2019ApJ...887L..27G | 299 | X | 7 | 25 | 44 | NICER X-ray observations of seven nearby rotation-powered millisecond pulsars. | GUILLOT S., KERR M., RAY P.S., et al. | ||
2019MNRAS.490.4666P | 105 | D | F | 4 | 65 | 195 | The International Pulsar Timing Array: second data release. | PERERA B.B.P., DECESAR M.E., DEMOREST P.B., et al. | |
2020ApJ...888...45T | 70 | A | X | 2 | 8 | ~ | The masses of isolated neutron stars inferred from the gravitational redshift measurements. | TANG S.-P., JIANG J.-L., GAO W.-H., et al. | |
2020MNRAS.491.5951H | 17 | D | 2 | 49 | 43 | A pulsar-based time-scale from the International Pulsar Timing Array. | HOBBS G., GUO L., CABALLERO R.N., et al. | ||
2019MNRAS.490.5848G | 174 | X | 4 | 7 | 30 | Neutron star radius measurement from the ultraviolet and soft X-ray thermal emission of PSR J0437-4715. | GONZALEZ-CANIULEF D., GUILLOT S. and REISENEGGER A. | ||
2020ApJ...889...38A | 305 | X C F | 5 | 20 | ~ | The NANOGrav 11 yr data set: limits on gravitational wave memory. | AGGARWAL K., ARZOUMANIAN Z., BAKER P.T., et al. | ||
2020ApJ...889..165D | 157 | A | X | 4 | 4 | ~ | Evidence for a multipolar magnetic field in SGR J1745-2900 from X-ray light-curve analysis. | DE LIMA R.C.R., COELHO J.G., PEREIRA J.P., et al. | |
2020ApJ...890..108H | 783 | X C | 17 | 9 | ~ | The NANOGrav 11 yr data set: evolution of gravitational-wave background statistics. | HAZBOUN J.S., SIMON J., TAYLOR S.R., et al. | ||
2020ApJ...890..139S | 44 | X | 1 | 3 | ~ | Properties of binary components and remnant in GW170817 using equations of state in finite temperature field theory models. | SOMA S. and BANDYOPADHYAY D. | ||
2020MNRAS.492.1025C | 148 | D | X | 4 | 58 | ~ | Spectral characterization of the non-thermal X-ray emission of gamma-ray pulsars. | COTI ZELATI F., TORRES D.F., LI J., et al. | |
2020A&A...634A.105S | 17 | D | 1 | 68 | ~ | A dispersion excess from pulsar wind nebulae and supernova remnants: Implications for pulsars and FRBs. | STRAAL S.M., CONNOR L. and VAN LEEUWEN J. | ||
2020ApJ...891L...5H | 131 | X C | 2 | 7 | ~ | Is GW190425 consistent with being a neutron star-black hole merger? | HAN M.-Z., TANG S.-P., HU Y.-M., et al. | ||
2020ApJ...891..148S | 87 | X | 2 | 6 | ~ | Effects of symmetry energy on the equation of state for simulations of core-collapse supernovae and neutron-star mergers. | SHEN H., JI F., HU J., et al. | ||
2020ApJ...891..156N | 44 | X | 1 | 3 | ~ | A new approach to the mass and radius of Neutron stars with supernova neutrinos. | NAKAZATO K. and SUZUKI H. | ||
2020ApJS..247...33A ![]() |
17 | D | 1 | 5180 | 880 | Fermi Large Area Telescope fourth source catalog. | ABDOLLAHI S., ACERO F., ACKERMANN M., et al. | ||
2020MNRAS.493.3770S | 131 | X | 3 | 12 | ~ | Heating of the real polar cap of radio pulsars. | SZNAJDER M. and GEPPERT U. | ||
2020A&A...635A..76B ![]() |
17 | D | 2 | 105 | ~ | A census of the pulsar population observed with the international LOFAR station FR606 at low frequencies (25-80 MHz). | BONDONNEAU L., GRIESSMEIER J.-M., THEUREAU G., et al. | ||
2020ApJ...892...14T | 44 | X | 1 | 2 | ~ | Spin-polarized neutron matter, the maximum mass of neutron stars, and GW170817. | TEWS I. and SCHWENK A. | ||
2020ApJ...892...55J | 1114 | T A | X C | 24 | 7 | ~ |
PSR J0030+0451, GW170817, and the nuclear data: joint constraints on equation of state and bulk properties of neutron stars. |
JIANG J.-L., TANG S.-P., WANG Y.-Z., et al. | |
2020ApJ...892...76M ![]() |
17 | D | 1 | 516 | 26 | The Green Bank North Celestial Cap pulsar survey. V. Pulsar census and survey sensitivity. | McEWEN A.E., SPIEWAK R., SWIGGUM J.K., et al. | ||
2020ApJ...892..150R | 44 | X | 1 | 8 | ~ | A NICER view of spectral and profile evolution for three X-ray-emitting millisecond pulsars. | ROWAN D.M., GHAZI Z., LUGO L., et al. | ||
2020MNRAS.493.5408T | 44 | X | 1 | 7 | ~ | Ultrarelativistic astrophysics using multimessenger observations of double neutron stars with LISA and the SKA. | THRANE E., OSLOWSKI S. and LASKY P.D. | ||
2020ApJ...893L...8B | 17 | D | 1 | 47 | ~ | The NANOGrav 11 yr data set: constraints on planetary masses around 45 millisecond pulsars. | BEHRENS E.A., RANSOM S.M., MADISON D.R., et al. | ||
2020ApJ...893L..21R | 497 | A | X C | 10 | 4 | 144 | Constraining the dense matter equation of state with joint analysis of NICER and LIGO/Virgo measurements. | RAAIJMAKERS G., GREIF S.K., RILEY T.E., et al. | |
2020ApJ...893...61Z | 261 | X | 6 | 3 | ~ | Constraints on the muon fraction and density profile in neutron stars. | ZHANG N.-B. and LI B.-A. | ||
2020ApJ...893L..38C | 940 | T A | S X C | 19 | 2 | ~ |
A numerical model for the multiwavelength lightcurves of PSR J0030+0451. |
CHEN A.Y., YUAN Y. and VASILOPOULOS G. | |
2020ApJ...893..129L | 44 | X | 1 | 6 | ~ | Neutron star radius-to-mass ratio from partial accretion disk occultation as measured through Fe Kα line profiles. | LA PLACA R., STELLA L., PAPITTO A., et al. | ||
2020ApJ...894L...8C | 200 | A | X C | 4 | 3 | ~ | Twin stars and the stiffness of the nuclear equation of state: ruling out strong phase transitions below 1.7 n0 with the new NICER radius measurements. | CHRISTIAN J.-E. and SCHAFFNER-BIELICH J. | |
2020ApJ...894....4D | 87 | C | 1 | 3 | ~ | Equation of state and progenitor dependence of stellar-mass black hole formation. | DA SILVA SCHNEIDER A., O'CONNOR E., GRANQVIST E., et al. | ||
2020MNRAS.494..228L ![]() |
17 | D | 2 | 63 | 46 | The UTMOST pulsar timing programme - II. Timing noise across the pulsar population. | LOWER M.E., BAILES M., SHANNON R.M., et al. | ||
2020MNRAS.493...78A | 44 | X | 1 | 5 | ~ | Supermassive neutron stars in axion F(R) gravity. | ASTASHENOK A.V. and ODINTSOV S.D. | ||
2020MNRAS.494.3899N | 44 | X | 1 | 33 | ~ | Orthogonal pulsars as a key test for pulsar evolution. | NOVOSELOV E.M., BESKIN V.S., GALISHNIKOVA A.K., et al. | ||
2020MNRAS.495.4508E | 44 | X | 1 | 16 | ~ | Spectral analysis of the quiescent low-mass X-ray binary in the globular cluster M30. | ECHIBURU C.S., GUILLOT S., ZHAO Y., et al. | ||
2020ApJ...896L..44A | 152 | X | 1 | 10 | 1089 | GW190814: gravitational waves from the coalescence of a 23 solar mass black hole with a 2.6 solar mass compact object. | ABBOTT R., ABBOTT T.D., ABRAHAM S., et al. | ||
2020ApJ...897...96W | 174 | X C | 3 | 8 | ~ | Properties of neutron stars described by a relativistic ab initio model. | WANG C., HU J., ZHANG Y., et al. | ||
2020ApJ...897..165T | 218 | X | 5 | 16 | ~ | Bayesian inference of dense matter equation of state Within relativistic mean field models using astrophysical measurements. | TRAVERSI S., CHAR P. and PAGLIARA G. | ||
2020A&A...638A..40M | 87 | C | 1 | 5 | ~ | Neutron star matter equation of state including d*-hexaquark degrees of freedom. | MANTZIRIS A., PASTORE A., VIDANA I., et al. | ||
2020ApJ...898..125P | 46 | X | 1 | 17 | 49 | NS 1987A in SN 1987A. | PAGE D., BEZNOGOV M.V., GARIBAY I., et al. | ||
2020ApJ...899....4X | 113 | A | X | 3 | 3 | ~ | Bayesian inference of the symmetry energy of superdense neutron-rich matter from future radius measurements of massive neutron stars. | XIE W.-J. and LI B.-A. | |
2020MNRAS.497.3118H | 47 | X | 1 | 9 | 30 | Constraining the dense matter equation-of-state with radio pulsars. | HU H., KRAMER M., WEX N., et al. | ||
2020ApJ...899..164H | 104 | D | X | 3 | 9 | ~ | On the minimum radius of very massive neutron stars. | HAN S. and PRAKASH M. | |
2020ApJS..250....6W | 131 | X C | 2 | 4 | ~ | Comprehensive analysis of the tidal effect in gravitational waves and implication for cosmology. | WANG B., ZHU Z., LI A., et al. | ||
2020MNRAS.498..344W | 87 | X | 2 | 4 | ~ | Cooling of hybrid neutron stars with microscopic equations of state. | WEI J.-B., BURGIO G.F., SCHULZE H.-J., et al. | ||
2020MNRAS.498.3616A | 44 | X | 1 | 5 | ~ | Rotating neutron stars in F(R) gravity with axions. | ASTASHENOK A.V. and ODINTSOV S.D. | ||
2020A&A...641A..15S | 44 | X | 1 | 1 | ~ | Magnetospheric return-current-heated atmospheres of rotation-powered millisecond pulsars. | SALMI T., SULEIMANOV V.F., NATTILA J., et al. | ||
2020ApJ...902...32Y | 133 | X C | 2 | 4 | 9 | Non-Newtonian gravity in strange quark stars and constraints from the observations of PSR J0740+6620 and GW170817. | YANG S.-H., PI C.-M., ZHENG X.-P., et al. | ||
2020ApJ...902...38Z | 87 | X | 2 | 6 | ~ | GW190814's secondary component with mass 2.50-2.67 M☉ as a superfast pulsar. | ZHANG N.-B. and LI B.-A. | ||
2020MNRAS.499L..96P | 44 | X | 1 | 6 | ~ | Can we constrain the aftermath of binary neutron star mergers with short gamma-ray bursts? | PATRICELLI B. and BERNARDINI M.G. | ||
2020MNRAS.499..914R | 44 | X | 1 | 1 | ~ | Proto-neutron stars with heavy baryons and universal relations. | RADUTA A.R., OERTEL M. and SEDRAKIAN A. | ||
2020A&A...642A..78M | 44 | X | 1 | 3 | ~ | Neural network reconstruction of the dense matter equation of state derived from the parameters of neutron stars. | MORAWSKI F. and BEJGER M. | ||
2020ApJ...903...40D | 113 | A | X | 3 | 3 | ~ | Three-dimensional modeling of the magnetothermal evolution of Neutron stars: method and test cases. | DE GRANDIS D., TUROLLA R., WOOD T.S., et al. | |
2020ApJ...903L..38W | 87 | X | 2 | 10 | ~ | Fast radio burst trains from magnetar oscillations. | WADIASINGH Z. and CHIRENTI C. | ||
2020MNRAS.499.3243S | 636 | K A | X C | 14 | 4 | ~ | Recycled pulsars with multipolar magnetospheres from accretion-induced magnetic burial. | SUVOROV A.G. and MELATOS A. | |
2020MNRAS.499.4445P | 44 | X | 1 | 3 | ~ | Magnetic quadri-dipolar stars rotating in vacuum. | PETRI J. | ||
2020ApJ...904...39H | 174 | X | 4 | 7 | ~ | The possibility of the secondary object in GW190814 as a neutron star. | HUANG K., HU J., ZHANG Y., et al. | ||
2020ApJ...904...80E | 44 | X | 1 | 4 | ~ | Discriminating between neutron stars and black holes with imperfect knowledge of the maximum neutron star mass. | ESSICK R. and LANDRY P. | ||
2020MNRAS.499.5972H | 87 | X | 2 | 6 | ~ | A scalable random forest regressor for combining neutron-star equation of state measurements: a case study with GW170817 and GW190425. | HERNANDEZ VIVANCO F., SMITH R., THRANE E., et al. | ||
2020ApJ...904...91V | 45 | X | 1 | 8 | 15 | X-ray through very high energy intrabinary shock emission from black widows and redbacks. | VAN DER MERWE C.J.T., WADIASINGH Z., VENTER C., et al. | ||
2020ApJ...904..103M | 174 | X | 4 | 5 | ~ | Constraining hadron-quark phase transition parameters within the quark-mean-field model using multimessenger observations of neutron stars. | MIAO Z., LI A., ZHU Z., et al. | ||
2020ApJ...904..119F | 200 | A | X | 5 | 10 | ~ | Strong post-merger gravitational radiation of GW170817-like events. | FAN Y.-Z., JIANG J.-L., TANG S.-P., et al. | |
2020A&A...643A..82M | 200 | A | X C | 4 | 4 | ~ | Toward a unified equation of state for multi-messenger astronomy. | MARCZENKO M., BLASCHKE D., REDLICH K., et al. | |
2020A&A...643A..84L | 44 | X | 1 | 1 | ~ | Oblate Schwarzschild approximation for polarized radiation from rapidly rotating neutron stars. | LOKTEV V., SALMI T., NATTILA J., et al. | ||
2020ApJ...905...48T | 44 | X | 1 | 10 | ~ | GW190814: spin and equation of state of a neutron star companion. | TSOKAROS A., RUIZ M. and SHAPIRO S.L. | ||
2020ApJ...905L..34A | 104 | D | X | 2 | 15 | 657 | The NANOGrav 12.5 yr data set: search for an isotropic stochastic gravitational-wave background. | ARZOUMANIAN Z., BAKER P.T., BLUMER H., et al. | |
2020A&A...644A.153D | 235 | D | X F | 5 | 40 | 21 | Dispersion measure variability for 36 millisecond pulsars at 150 MHz with LOFAR. | DONNER J.Y., VERBIEST J.P.W., TIBURZI C., et al. | |
2021MNRAS.500.5369B | 134 | X | 3 | 1 | ~ | Polarized radiation transfer in neutron star surface layers. | BARCHAS J.A., HU K. and BARING M.G. | ||
2021MNRAS.501..701Y | 18 | D | 1 | 55 | ~ | Searching for gravitational-wave bursts from cosmic string cusps with the Parkes Pulsar Timing Array. | YONEMARU N., KUROYANAGI S., HOBBS G., et al. | ||
2021ApJS..252....4A | 289 | D | X C | 6 | 48 | 104 | The NANOGrav 12.5 yr data set: observations and narrowband timing of 47 millisecond pulsars. | ALAM M.F., ARZOUMANIAN Z., BAKER P.T., et al. | |
2021ApJS..252....5A | 243 | D | X C | 5 | 51 | 84 | The NANOGrav 12.5 yr data set: wideband timing of 47 millisecond pulsars. | ALAM M.F., ARZOUMANIAN Z., BAKER P.T., et al. | |
2021ApJ...907L..37D | 134 | X C | 2 | 8 | ~ | Rapidly spinning compact stars with deconfinement phase transition. | DEMIRCIK T., ECKER C. and JARVINEN M. | ||
2021ApJ...907...63K | 859 | T A | X C | 17 | 1 | 26 |
The multipolar magnetic field of the millisecond pulsar PSR J0030+0451. |
KALAPOTHARAKOS C., WADIASINGH Z., HARDING A.K., et al. | |
2021ApJ...908L...1T | 45 | X | 1 | 7 | ~ | On the nature of GW190814 and its impact on the understanding of supranuclear matter. | TEWS I., PANG P.T.H., DIETRICH T., et al. | ||
2021ApJ...908..103R | 224 | X C | 4 | 4 | ~ | Optimized statistical approach for comparing multi-messenger neutron star data. | RAITHEL C.A., OZEL F. and PSALTIS D. | ||
2021MNRAS.501.4479P | 45 | X | 1 | 2 | ~ | Off-centred force-free neutron star magnetospheres. | PETRI J. | ||
2021A&A...646A..23S | 45 | X | 1 | 2 | ~ | Neutron star parameter constraints for accretion-powered millisecond pulsars from the simulated IXPE data. | SALMI T., LOKTEV V., KORSMAN K., et al. | ||
2021MNRAS.502..407P | 18 | D | 1 | 31 | 20 | Measurements of pulse jitter and single-pulse variability in millisecond pulsars using MeerKAT. | PARTHASARATHY A., BAILES M., SHANNON R.M., et al. | ||
2020RAA....20..184L | 61 | D | X | 2 | 27 | ~ | Gravitational wave sensitivity curve of pulsar timing arrays affected by correlated noises. | LIU S. and TONG M.-L. | |
2021MNRAS.502.1596Z | 45 | X | 1 | 28 | ~ | Chandra and HST studies of six millisecond pulsars in the globular cluster M13. | ZHAO J., ZHAO Y. and HEINKE C.O. | ||
2021MNRAS.502.2005Z | 90 | X | 2 | 17 | 4 | PSR B0656+14: the unified outlook from the infrared to X-rays. | ZHARIKOV S., ZYUZIN D., SHIBANOV Y., et al. | ||
2021MNRAS.502.3476S | 45 | X | 1 | 7 | ~ | Equation of state of hot dense hyperonic matter in the Quark-Meson-Coupling (QMC-A) model. | STONE J.R., DEXHEIMER V., GUICHON P.A.M., et al. | ||
2021ApJ...908..122G | 101 | X | 2 | 7 | 82 | On the maximum mass of neutron stars and GW190814. | GODZIEBA D.A., RADICE D. and BERNUZZI S. | ||
2021A&A...647A..84T | 242 | D | X C | 5 | 50 | 19 | The impact of solar wind variability on pulsar timing. | TIBURZI C., SHAIFULLAH G.M., BASSA C.G., et al. | |
2021A&A...647A.101B | 466 | D | S X C | 9 | 11 | ~ | Constraining millisecond pulsar geometry using time-aligned radio and gamma-ray pulse profile. | BENLI O., PETRI J. and MITRA D. | |
2021MNRAS.503..533A | 45 | X | 1 | 2 | ~ | The phenomenology of dynamical neutron star tides. | ANDERSSON N. and PNIGOURAS P. | ||
2021ApJ...910...62Z | 134 | X C | 2 | 9 | ~ | R-mode stability of GW190814's secondary component as a supermassive and superfast pulsar. | ZHOU X., LI A. and LI B.-A. | ||
2021ApJ...910L..22H | 45 | X | 1 | 2 | ~ | The role of strong gravity and the nuclear equation of state on neutron-star common-envelope accretion. | HOLGADO A.M., SILVA H.O., RICKER P.M., et al. | ||
2021ApJ...910...96M | 179 | X | 4 | 7 | ~ | Equation-of-state table with hyperon and antikaon for supernova and neutron star merger. | MALIK T., BANIK S. and BANDYOPADHYAY D. | ||
2021MNRAS.503.4829M | 45 | X | 1 | 2 | ~ | Maximum mass of hybrid star formed via shock-induced phase transition in cold neutron stars. | MALLICK R., SINGH S. and NANDI R. | ||
2021MNRAS.504..701B | 45 | X | 1 | 7 | ~ | Super-eddington emission from accreting, highly magnetized neutron stars with a multipolar magnetic field. | BRICE N., ZANE S., TUROLLA R., et al. | ||
2021MNRAS.504.1273P | 45 | X | 1 | 2 | ~ | Dynamical tides in neutron stars: the impact of the crust. | PASSAMONTI A., ANDERSSON N. and PNIGOURAS P. | ||
2021ApJ...913...27L | 385 | T A | X | 8 | 9 | ~ |
Constraints on the maximum mass of neutron stars with a quark core from GW170817 and NICER PSR J0030+0451 data. |
LI A., MIAO Z., HAN S., et al. | |
2021MNRAS.504.3354S | 358 | X C F | 6 | 9 | ~ | Implications of feebly interacting dark sector on neutron star properties and constraints from GW170817. | SEN D. and GUHA A. | ||
2021ApJ...914L..15B | 2139 | A | S X C | 46 | 3 | 21 | Constraining the neutron Star mass-radius relation and dense matter equation of state with NICER. III. Model description and verification of parameter estimation codes. | BOGDANOV S., DITTMANN A.J., HO W.C.G., et al. | |
2021MNRAS.505.1600B | 134 | X C | 2 | 6 | ~ | GW190814: on the properties of the secondary component of the binary. | BISWAS B., NANDI R., CHAR P., et al. | ||
2021MNRAS.505.4531M | 332 | D | X C F | 6 | 44 | ~ | Fresnel models for gravitational wave effects on pulsar timing. | McGRATH C. and CREIGHTON J. | |
2021ApJS..255....5A ![]() |
18 | D | 1 | 977 | ~ | The CHIME pulsar project: system overview. | AMIRI M., BANDURA K.M., BOYLE P.J., et al. | ||
2021ApJ...915L..12F | 94 | X | 1 | 8 | 397 | Refined mass and geometric measurements of the high-mass PSR J0740+6620. | FONSECA E., CROMARTIE H.T., PENNUCCI T.T., et al. | ||
2021ApJ...915..109S | 269 | X C | 5 | 1 | ~ | Mass and radius relations of quarkyonic stars using an excluded-volume model. | SEN S. and SIVERTSEN L. | ||
2021ApJ...916..100R ![]() |
18 | D | 1 | 422 | 2 | Analyzing the Galactic pulsar distribution with machine learning. | RONCHI M., GRABER V., GARCIA-GARCIA A., et al. | ||
2021ApJ...917...10T | 18 | D | 1 | 51 | 12 | The NANOGrav 12.5 year data set: monitoring interstellar scattering delays. | TURNER J.E., McLAUGHLIN M.A., CORDES J.M., et al. | ||
2021ApJ...917...46R | 90 | X | 2 | 7 | ~ | Heavy magnetic neutron stars. | RATHER I.A., RAHAMAN U., DEXHEIMER V., et al. | ||
2021AJ....162...51I | 45 | X | 1 | 4 | ~ | The impact of classical and general relativistic obliquity precessions on the habitability of circumstellar neutron stars' planet's. | IORIO L. | ||
2021ApJ...917L..22M | 90 | C | 1 | 5 | ~ | Bayesian inference of strange star equation of state using the GW170817 and GW190425 data. | MIAO Z., JIANG J.-L., LI A., et al. | ||
2021ApJ...918L..26W | 45 | X | 1 | 14 | 11 | NICER detection of thermal X-ray pulsations from the massive millisecond pulsars PSR J0740+6620 and PSR J1614-2230. | WOLFF M.T., GUILLOT S., BOGDANOV S., et al. | ||
2021ApJ...918L..27R | 1206 | X C | 24 | 6 | 521 | A NICER view of the massive pulsar PSR J0740+6620 informed by radio timing and XMM-Newton spectroscopy. | RILEY T.E., WATTS A.L., RAY P.S., et al. | ||
2021ApJ...918L..28M | 1147 | A | X C | 24 | 12 | 542 | The radius of PSR J0740+6620 from NICER and XMM-Newton data. | MILLER M.C., LAMB F.K., DITTMANN A.J., et al. | |
2021ApJ...918L..29R | 829 | A | D | X C | 18 | 8 | 186 | Constraints on the dense matter equation of state and neutron star properties from NICER's mass-radius estimate of PSR J0740+6620 and multimessenger observations. | RAAIJMAKERS G., GREIF S.K., HEBELER K., et al. |
2021MNRAS.506L..26J | 833 | T K A | X | 18 | 1 | ~ |
Pair production in the millisecond pulsar J0030+0451. |
JONES P.B. | |
2021A&A...652A..34B | 63 | D | X | 2 | 18 | 9 | Pulsars with NenuFAR: Backend and pipelines. | BONDONNEAU L., GRIESSMEIER J.-M., THEUREAU G., et al. | |
2021MNRAS.506.5015H | 91 | C | 1 | 14 | 16 | X-ray bounds on cooling, composition, and magnetic field of the Cassiopeia A neutron star and young central compact objects. | HO W.C.G., ZHAO Y., HEINKE C.O., et al. | ||
2021MNRAS.506.5916L | 699 | T K A | S X C | 13 | 4 | ~ |
Bayesian inference of quark star equation of state using the NICER PSR J0030+0451 data. |
LI A., MIAO Z.-Q., JIANG J.-L., et al. | |
2021MNRAS.507..116G | 269 | X C F | 4 | 6 | ~ | Modelling neutron star mountains in relativity. | GITTINS F. and ANDERSSON N. | ||
2021MNRAS.507..421I | 45 | X | 1 | 5 | ~ | The impact of the spin-orbit misalignment and of the spin of B on the Lense-Thirring orbital precessions of the double pulsar PSR J0737-3039A/B. | IORIO L. | ||
2021MNRAS.507.2991T | 690 | D | X C F | 14 | 10 | ~ | Baryonic dense matter in view of gravitational-wave observations. | THAPA V.B., KUMAR A. and SINHA M. | |
2021MNRAS.507.4053D | 90 | F | 1 | 6 | ~ | Effects of dark matter on the in-spiral properties of the binary neutron stars. | DAS H.C., KUMAR A. and PATRA S.K. | ||
2021ApJ...919...11H | 564 | A | X C | 12 | 4 | ~ | Bayesian nonparametric inference of the neutron star equation of state via a neural network. | HAN M.-Z., JIANG J.-L., TANG S.-P., et al. | |
2021A&A...654A..12B | 45 | X | 1 | 9 | ~ | Exploring the nature of ambiguous merging systems: GW190425 in low latency. | BARBIERI C., SALAFIA O.S., COLPI M., et al. | ||
2021MNRAS.508.2399G | 45 | X | 1 | 9 | 4 | Modelling spin-up episodes in accreting millisecond X-ray pulsars. | GLAMPEDAKIS K. and SUVOROV A.G. | ||
2021ApJ...920...57C | 45 | X | 1 | 3 | ~ | Observational constraints on the pulsar wind model: the cases of Crab and Vela. | COELHO J.G., DE ARAUJO J.C.N., LADISLAU S.M., et al. | ||
2021ApJ...921...63B | 314 | A | D | X C | 7 | 5 | ~ | Impact of PREX-II and combined Radio/NICER/XMM-Newton's mass-radius measurement of PSR J0740+6620 on the dense-matter equation of state. | BISWAS B. |
2021ApJ...921..111Z | 179 | X C | 3 | 3 | ~ | Impact of NICER's radius measurement of PSR J0740+6620 on nuclear symmetry energy at suprasaturation densities. | ZHANG N.-B. and LI B.-A. | ||
2021ApJ...921..149N | 179 | X C | 3 | 9 | ~ | Constraining scalar-tensor theories using neutron star-black hole gravitational wave events. | NIU R., ZHANG X., WANG B., et al. | ||
2021ApJ...921..156Z | 95 | C | 1 | 7 | 35 | No detectable kilonova counterpart is expected for o3 neutron star-black hole candidates. | ZHU J.-P., WU S., YANG Y.-P., et al. | ||
2021ApJ...922...14P | 280 | X | 6 | 7 | 83 | Nuclear physics multimessenger astrophysics constraints on the neutron star equation of state: adding NICER's PSR J0740+6620 measurement. | PANG P.T.H., TEWS I., COUGHLIN M.W., et al. | ||
2021ApJ...923...64D | 134 | X C | 2 | 8 | 5 | Effects of the nuclear equation of state on Type I X-ray bursts: interpretation of the X-ray bursts from GS 1826-24. | DOHI A., NISHIMURA N., HASHIMOTO M., et al. | ||
2021ApJ...923..108S | 134 | X C | 2 | 9 | ~ | Revisiting the post-glitch relaxation of the 2000 Vela glitch with the neutron star equation of states in the Brueckner and relativistic Brueckner theories. | SHANG X. and LI A. | ||
2021ApJ...923L..22A | 925 | A | S X C | 19 | 11 | 30 | The NANOGrav 12.5-year data set: search for non-einsteinian polarization modes in the gravitational-wave background. | ARZOUMANIAN Z., BAKER P.T., BLUMER H., et al. | |
2021ApJ...923..250J | 179 | X C | 3 | 7 | ~ | Hadron-quark pasta phase in massive neutron stars. | JU M., HU J. and SHEN H. | ||
2022MNRAS.509.4916X | 48 | X | 1 | 7 | 10 | Is the birth of PSR J0538+2817 accompanied by a gamma-ray burst? | XU F., GENG J.-J., WANG X., et al. | ||
2022ApJ...924...38K | 53 | X | 1 | 4 | 26 | Core-collapse supernova simulations and the formation of neutron stars, hybrid stars, and black holes. | KURODA T., FISCHER T., TAKIWAKI T., et al. | ||
2022ApJ...925...16T | 140 | X C | 2 | 7 | ~ | Effects of the ΦMeson on the Properties of Hyperon Stars in the Density-dependent Relativistic Mean Field Model. | TU Z.-H. and ZHOU S.-G. | ||
2022ApJ...925...98N | 49 | X | 1 | 6 | 17 | Observing Supernova Neutrino Light Curves with Super-Kamiokande. II. Impact of the Nuclear Equation of State. | NAKAZATO K., NAKANISHI F., HARADA M., et al. | ||
2022MNRAS.510.4873A | 96 | F | 1 | 52 | 185 | The International Pulsar Timing Array second data release: Search for an isotropic gravitational wave background. | ANTONIADIS J., ARZOUMANIAN Z., BABAK S., et al. | ||
2022ApJ...926...75B | 121 | A | X | 3 | 4 | ~ | Bayesian Model Selection of Neutron Star Equations of State Using Multi-messenger Observations. | BISWAS B. | |
2022A&A...658A.143B | 47 | X | 1 | 19 | 11 | Dual-frequency single-pulse study of PSR B0950+08. | BILOUS A.V., GRIESSMEIER J.M., PENNUCCI T., et al. | ||
2022MNRAS.511.3304M | 19 | D | 1 | 400 | 6 | An updated glitch rate law inferred from radio pulsars. | MILLHOUSE M., MELATOS A., HOWITT G., et al. | ||
2022MNRAS.511.3937K | 392 | D | X | 9 | 6 | 4 | Pulsar observations at low frequencies: applications to pulsar timing and solar wind models. | KUMAR P., WHITE S.M., STOVALL K., et al. | |
2022MNRAS.511.3983S | 53 | X | 1 | 1 | 6 | Long-term general relativistic magnetohydrodynamics simulations of magnetic field in isolated neutron stars. | SUR A., COOK W., RADICE D., et al. | ||
2022ApJ...926..147B | 93 | C | 1 | 2 | ~ | Effect of the Nuclear Equation of State on Relativistic Turbulence-induced Core-collapse Supernovae. | BOCCIOLI L., MATHEWS G.J., SUH I.-S., et al. | ||
2022ApJ...926..196H | 47 | X | 1 | 6 | 3 | A Nuclear Equation of State Inferred from Stellar r-process Abundances. | HOLMBECK E.M., O'SHAUGHNESSY R., DELFAVERO V., et al. | ||
2022ApJ...927..112L | 188 | X C | 3 | 8 | 9 | Radius Constraints from Reflection Modeling of Cygnus X-2 with NuSTAR and NICER. | LUDLAM R.M., CACKETT E.M., GARCIA J.A., et al. | ||
2022ApJ...927..117W | 19 | D | 1 | 123 | 8 | Gamma-Ray Spectral Properties of the Galactic Globular Clusters: Constraint on the Number of Millisecond Pulsars. | WU W., WANG Z., XING Y., et al. | ||
2022MNRAS.512..517M | 420 | X F | 8 | 9 | ~ | Oscillating magnetized hybrid stars under the magnifying glass of multimessenger observations. | MARIANI M., TONETTO L., RODRIGUEZ M.C., et al. | ||
2022MNRAS.512.3189Y | 140 | X C | 2 | 7 | 1 | Angular dependence of coherent radio emission from magnetars with multipolar magnetic fields. | YAMASAKI S., EKSI K.Y. and GOGUS E. | ||
2022ApJ...927..195E | 401 | A | S X | 8 | 3 | ~ | Selection Effects in Periodic X-Ray Data from Maximizing Detection Statistics. | ESSICK R. | |
2022ApJ...928...82H | 47 | X | 1 | 7 | ~ | Intensity and Polarization Characteristics of Extended Neutron Star Surface Regions. | HU K., BARING M.G., BARCHAS J.A., et al. | ||
2022ApJ...929...39H | 283 | X C | 5 | 2 | 7 | Bayesian Solar Wind Modeling with Pulsar Timing Arrays. | HAZBOUN J.S., SIMON J., MADISON D.R., et al. | ||
2022ApJ...929...43G | 142 | X C | 2 | 6 | 16 | PUSHing Core-collapse Supernovae to Explosions in Spherical Symmetry. V. Equation of State Dependency of Explosion Properties, Nucleosynthesis Yields, and Compact Remnants. | GHOSH S., WOLFE N. and FROHLICH C. | ||
2022ApJ...929...44D | 93 | C | 1 | 8 | ~ | Merger of a Neutron Star with a Black Hole: One-family versus Two-families Scenario. | DI CLEMENTE F., DRAGO A. and PAGLIARA G. | ||
2022ApJ...929...83Q | 47 | X | 1 | 5 | ~ | Revisiting Black Hole Hyperaccretion in the Center of Gamma-Ray Bursts for the Lower Mass Gap. | QU H.-M. and LIU T. | ||
2022ApJ...925L..23M | 140 | X C | 2 | 3 | ~ | Reconciling Multi-messenger Constraints with Chiral Symmetry Restoration. | MARCZENKO M., REDLICH K. and SASAKI C. | ||
2022MNRAS.513....1C | 47 | X | 1 | 11 | ~ | Variations of magnetic multipoles in the X-ray binary pulsars Her X-1 and A 0535+26. | CHRISTODOULOU D.M., LAYCOCK S.G.T., KAZANAS D., et al. | ||
2022Sci...376..521F | 65 | D | X | 2 | 35 | 12 | A gamma-ray pulsar timing array constrains the nanohertz gravitational wave background. | FERMI-LAT COLLABORATION | |
2022ApJ...929..137C | 93 | X | 2 | 8 | ~ | Anatomy of Pulsar XTE J1829-098: Ultramassive SXFT with a Dominant Nondipolar Magnetic Field, or the Third Canonical HMXB Caught at the Bottom of the Corbet Gap?. | CHRISTODOULOU D.M., BHATTACHARYA S., LAYCOCK S.G.T., et al. | ||
2022ApJ...929..183L | 401 | A | X C | 8 | 3 | ~ | Effects of Isoscalar- and Isovector-scalar Meson Mixing on Neutron Star Structure. | LI F., CAI B.-J., ZHOU Y., et al. | |
2022MNRAS.513.3788K | 252 | D | X C F | 4 | 7 | ~ | Compact star merger events with stars composed of interacting strange quark matter. | KUMAR A., THAPA V.B. and SINHA M. | |
2022ApJ...930....4L | 233 | X | 5 | 7 | ~ | The Bulk Properties of Isolated Neutron Stars Inferred from the Gravitational Redshift Measurements. | LUO C.-N., TANG S.-P., JIANG J.-L., et al. | ||
2022ApJ...930...17M | 280 | X C | 5 | 7 | ~ | Relativistic Description of Dense Matter Equation of State and Compatibility with Neutron Star Observables: A Bayesian Approach. | MALIK T., FERREIRA M., AGRAWAL B.K., et al. | ||
2022ApJ...930..137T | 187 | X C | 3 | 7 | ~ | Nuclear Matter and Neutron Stars from Relativistic Brueckner-Hartree-Fock Theory. | TONG H., WANG C. and WANG S. | ||
2022ApJ...931L...3N | 93 | F | 1 | 12 | 2 | Is the Black-widow Pulsar PSR J1555-2908 in a Hierarchical Triple System?. | NIEDER L., KERR M., CLARK C.J., et al. | ||
2022RAA....22e5001S | 19 | D | 1 | 11 | ~ | Constraining the Parameterized Neutron Star Equation of State with Astronomical Observations. | SINGHA J., MULLAI VANESHWAR S. and KUMAR A. | ||
2022ApJ...932..105J | 93 | F | 1 | 22 | ~ | Gravitational-wave Statistics for Pulsar Timing Arrays: Examining Bias from Using a Finite Number of Pulsars. | JOHNSON A.D., VIGELAND S.J., SIEMENS X., et al. | ||
2022ApJ...934...65K | 19 | D | 1 | 191 | 3 | The Fundamental Plane Relation for Gamma-Ray Pulsars Implied by 4FGL. | KALAPOTHARAKOS C., WADIASINGH Z., HARDING A.K., et al. | ||
2022MNRAS.515.1316P | 49 | X | 1 | 2 | 5 | Skylight: a new code for general-relativistic ray-tracing and radiative transfer in arbitrary space-times. | PELLE J., REULA O., CARRASCO F., et al. | ||
2022MNRAS.515.2710M | 97 | X | 2 | 2 | 8 | Electromagnetic precursor flares from the late inspiral of neutron star binaries. | MOST E.R. and PHILIPPOV A.A. | ||
2022NatAs...6..828C | 50 | X | 1 | 12 | 39 | Discovery of a radio-emitting neutron star with an ultra-long spin period of 76 s. | CALEB M., HEYWOOD I., RAJWADE K., et al. | ||
2022MNRAS.515.3539K | 47 | X | 1 | 3 | ~ | Universal relations for rapidly rotating cold and hot hybrid stars. | KHOSRAVI LARGANI N., FISCHER T., SEDRAKIAN A., et al. | ||
2022MNRAS.515.5071M | 654 | A | D | X F | 14 | 7 | 11 | On the moment of inertia of PSR J0737-3039 A from LIGO/Virgo and NICER. | MIAO Z., LI A. and DAI Z.-G. |
2022ApJ...934..139K | 95 | X | 2 | 2 | 5 | Universal Relations for the Increase in the Mass and Radius of a Rotating Neutron Star. | KONSTANTINOU A. and MORSINK S.M. | ||
2022ApJ...935...88H | 93 | X | 2 | 6 | ~ | The Hadron-quark Crossover in Neutron Star within Gaussian Process Regression Method. | HUANG K., HU J., ZHANG Y., et al. | ||
2022ApJ...935..122C | 261 | A | X C | 5 | 5 | ~ | Confirming the Existence of Twin Stars in a NICER Way. | CHRISTIAN J.-E. and SCHAFFNER-BIELICH J. | |
2022ApJ...936...69M | 311 | A | X C | 6 | 4 | 15 | Dark Matter Admixed Neutron Star Properties in the Light of X-Ray Pulse Profile Observations. | MIAO Z., ZHU Y., LI A., et al. | |
2022MNRAS.516.3381J | 47 | X | 1 | 6 | ~ | Hyperon bulk viscosity and r-modes of neutron stars. | JYOTHILAKSHMI O.P., KRISHNAN P.E.S., THAKUR P., et al. | ||
2022A&A...665A..74F ![]() |
233 | X C | 4 | 3 | ~ | Accreting neutron stars from the nuclear energy-density functional theory. II. Equation of state and global properties. | FANTINA A.F., ZDUNIK J.L., CHAMEL N., et al. | ||
2022Natur.606..276H | 157 | X | 3 | 6 | 102 | Constraining neutron-star matter with microscopic and macroscopic collisions | HUTH S., PANG P.T.H., TEWS I., et al. | ||
2022MNRAS.516.5084B | 47 | X | 1 | 25 | 1 | Pulsar death line revisited - II. 'The death valley'. | BESKIN V.S. and ISTOMIN A.Y. | ||
2022MNRAS.516.5196F | 47 | X | 1 | 2 | ~ | Magnetically confined mountains on accreting neutron stars with multipole magnetic fields. | FUJISAWA K., KISAKA S. and KOJIMA Y. | ||
2022ApJ...938..119M | 93 | C | 1 | 6 | ~ | Fast Neutrino Cooling in the Accreting Neutron Star MXB 1659-29. | MENDES M., FATTOYEV F.J., CUMMING A., et al. | ||
2022MNRAS.517..518S | 560 | X C F | 10 | 5 | ~ | Vector dark boson mediated feeble interaction between fermionic dark matter and strange quark matter in quark stars. | SEN D. and GUHA A. | ||
2022MNRAS.517.4265D | 280 | X C F | 4 | 5 | ~ | Dark particle mass effects on neutron star properties from a short-range correlated hadronic model. | DUTRA M., LENZI C.H. and LOURENCO O. | ||
2022A&A...666A..67P | 47 | X | 1 | 9 | 5 | Hubble constant and nuclear equation of state from kilonova spectro-photometric light curves. | PEREZ-GARCIA M.A., IZZO L., BARBA-GONZALEZ D., et al. | ||
2022ApJ...939L..34A | 63 | X | 1 | 5 | 81 | On the Sound Speed in Neutron Stars. | ALTIPARMAK S., ECKER C. and REZZOLLA L. | ||
2022ApJ...939L..35E | 53 | X | 1 | 5 | 33 | A General, Scale-independent Description of the Sound Speed in Neutron Stars. | ECKER C. and REZZOLLA L. | ||
2022ApJ...940...51E | 625 | D | X C | 13 | 20 | ~ | Impact of Rastall Gravity on Mass, Radius, and Sound Speed of the Pulsar PSR J0740+6620. | EL HANAFY W. | |
2022A&A...667A..79D | 47 | X | 1 | 27 | ~ | The SPAN512 mid-latitude pulsar survey at the Nançay Radio Telescope. | DESVIGNES G., COGNARD I., SMITH D.A., et al. | ||
2023MNRAS.518.1802S | 20 | D | 3 | 29 | 7 | Quality over quantity: Optimizing pulsar timing array analysis for stochastic and continuous gravitational wave signals. | SPERI L., PORAYKO N.K., FALXA M., et al. | ||
2022NatAs...6.1444D | 190 | X C | 3 | 12 | 38 | A strangely light neutron star within a supernova remnant. | DOROSHENKO V., SULEIMANOV V., PUHLHOFER G., et al. | ||
2022ApJ...941..116R | 47 | X | 1 | 13 | 3 | The Impact of Initial-Final Mass Relations on Black Hole Microlensing. | ROSE S., LAM C.Y., LU J.R., et al. | ||
2022ApJ...941..150S | 160 | D | X | 4 | 8 | 13 | The Radius of PSR J0740+6620 from NICER with NICER Background Estimates. | SALMI T., VINCIGUERRA S., CHOUDHURY D., et al. | |
2023ApJ...942...55S | 630 | A | X C | 12 | 6 | ~ | Astrophysical Implications on Hyperon Couplings and Hyperon Star Properties with Relativistic Equations of States. | SUN X., MIAO Z., SUN B., et al. | |
2023ApJ...943...52R | 50 | X | 1 | 4 | ~ | Magnetic-field Induced Deformation in Hybrid Stars. | RATHER I.A., RATHER A.A., LOPES I., et al. | ||
2023ApJ...943..163Z | 351 | S X | 6 | 4 | 5 | A Bayesian Inference of a Relativistic Mean-field Model of Neutron Star Matter from Observations of NICER and GW170817/AT2017gfo. | ZHU Z., LI A. and LIU T. | ||
2023MNRAS.519.4982D | 570 | K | D | X F | 11 | 37 | 6 | The MSPSRπ catalogue: VLBA astrometry of 18 millisecond pulsars. | DING H., DELLER A.T., STAPPERS B.W., et al. |
2023ApJ...944....7S | 101 | X | 2 | 3 | 5 | Constraining the Equation of State of Hybrid Stars Using Recent Information from Multidisciplinary Physics. | SHIRKE S., GHOSH S. and CHATTERJEE D. | ||
2023ApJ...944...28C | 102 | C | 1 | 7 | 15 | GRMHD Simulations of Neutron-star Mergers with Weak Interactions: r-process Nucleosynthesis and Electromagnetic Signatures of Dynamical Ejecta. | COMBI L. and SIEGEL D.M. | ||
2023ApJ...944...53G | 50 | X | 1 | 7 | ~ | Relativistic Correction to the r-mode Frequency in Light of Multimessenger Constraints. | GHOSH S., PATHAK D. and CHATTERJEE D. | ||
2023MNRAS.520.3151C | 1150 | A | D | X C | 23 | 4 | ~ | Relativistic force-free models of the thermal X-ray emission in millisecond pulsars observed by NICER. | CARRASCO F., PELLE J., REULA O., et al. |
2023ApJ...944..128C | 320 | D | X C | 6 | 37 | 3 | Wide-band Timing of the Parkes Pulsar Timing Array UWL Data. | CURYLO M., PENNUCCI T.T., BAILES M., et al. | |
2023ApJ...944..206L | 200 | X | 4 | 5 | ~ | Relativistic Hybrid Stars with Sequential First-order Phase Transitions in Light of Multimessenger Constraints. | LI J.J., SEDRAKIAN A. and ALFORD M. | ||
2023PASJ...75..103S | 50 | X | 1 | 5 | 1 | Modeling photometric variations due to a global inhomogeneity on an obliquely rotating star: Application to light curves of white dwarfs. | SUTO Y., SASAKI S., AIZAWA M., et al. | ||
2023MNRAS.521.2504O | 20 | D | 1 | 68 | 2 | An observationally derived kick distribution for neutron stars in binary systems. | O'DOHERTY T.N., BAHRAMIAN A., MILLER-JONES J.C.A., et al. | ||
2023A&A...672L..11H | 281 | A | X C F | 4 | 7 | 7 | A light strange star in the remnant HESS J1731-347: Minimal consistency checks. | HORVATH J.E., ROCHA L.S., DE SA L.M., et al. | |
2023RAA....23e5016X | 330 | A | X C | 6 | 11 | ~ | Probing into the Possible Range of the U Bosonic Coupling Constants in Neutron Stars Containing Hyperons. | XU Y., DIAO B., WANG Y.-B., et al. | |
2023ApJ...949...11J | 152 | X | 3 | 8 | 18 | Bayesian Analysis of Neutron-star Properties with Parameterized Equations of State: The Role of the Likelihood Functions. | JIANG J.-L., ECKER C. and REZZOLLA L. | ||
2023ApJ...950...77H | 480 | A | X C | 9 | 5 | ~ | Nonparametric Representation of Neutron Star Equation of State Using Variational Autoencoder. | HAN M.-Z., TANG S.-P. and FAN Y.-Z. | |
2023ApJ...950..129N | 300 | X C | 5 | 24 | ~ | The Effect of f(R, T) Modified Gravity on the Mass and Radius of Pulsar HerX1. | NASHED G.G.L. | ||
2023ApJ...950..186Z | 150 | X | 3 | 6 | ~ | Nonparametric Model for the Equations of State of a Neutron Star from Deep Neural Network. | ZHOU W., HU J., ZHANG Y., et al. | ||
2023MNRAS.519.2615E | 252 | X C F | 3 | 7 | 18 | Impact of large-mass constraints on the properties of neutron stars. | ECKER C. and REZZOLLA L. | ||
2023MNRAS.519.3194R | 100 | F | 2 | 6 | ~ | Constraining mass, radius, and tidal deformability of compact stars with axial wI modes: new universal relations including slow stable hybrid stars. | RANEA-SANDOVAL I.F., MARIANI M., LUGONES G., et al. | ||
2023MNRAS.519.3976M | 20 | D | 4 | 78 | 18 | The MeerKAT Pulsar Timing Array: first data release. | MILES M.T., SHANNON R.M., BAILES M., et al. | ||
2023MNRAS.520..314W | 20 | D | 2 | 35 | ~ | Radio pulsar emission-beam geometry at low frequency: LOFAR High-Band Survey sources studied using Arecibo at 1.4 GHz and 327 MHz. | WAHL H., RANKIN J., VENKATARAMAN A., et al. | ||
2023ApJ...951L...7R | 20 | D | 1 | 32 | 16 | The Gravitational-wave Background Null Hypothesis: Characterizing Noise in Millisecond Pulsar Arrival Times with the Parkes Pulsar Timing Array. | REARDON D.J., ZIC A., SHANNON R.M., et al. | ||
2023ApJ...951L...9A | 270 | D | X C | 5 | 68 | 35 | The NANOGrav 15 yr Data Set: Observations and Timing of 68 Millisecond Pulsars. | AGAZIE G., ALAM M.F., ANUMARLAPUDI A., et al. | |
2023ApJ...951L..10A | 120 | D | C | 2 | 72 | 14 | The NANOGrav 15 yr Data Set: Detector Characterization and Noise Budget. | AGAZIE G., ANUMARLAPUDI A., ARCHIBALD A.M., et al. | |
2023ApJ...951....3S | 150 | X C | 2 | 9 | 1 | Neutron Star Phase Transition as the Origin for the Fast Radio Bursts and Soft Gamma-Ray Repeaters of SGR J1935 + 2154. | SHEN J.-Y., ZOU Y.-C., YANG S.-H., et al. | ||
2023ApJ...951L..28A | 20 | D | 1 | 47 | ~ | The NANOGrav 12.5 yr Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries. | ARZOUMANIAN Z., BAKER P.T., BLECHA L., et al. | ||
2023ApJ...951L..50A | 20 | D | 1 | 72 | 13 | The NANOGrav 15 yr Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries. | AGAZIE G., ANUMARLAPUDI A., ARCHIBALD A.M., et al. | ||
2023ApJ...951..144E | 250 | X | 5 | 11 | ~ | Implications of the Conformal Constraint on Sound Speed on the Radius of PSR J0952-0607 within Rastall Gravity. | EL HANAFY W. and AWAD A. | ||
2023ApJ...953..115G | 100 | C | 1 | 13 | ~ | The Effects of Self-interacting Bosonic Dark Matter on Neutron Star Properties. | GIANGRANDI E., SAGUN V., IVANYTSKYI O., et al. |
© Université de Strasbourg/CNRS
• Contact