PSR J1843-1113 , the SIMBAD biblio

PSR J1843-1113 , the SIMBAD biblio (67 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST03:31:18


Sort references on where and how often the object is cited
trying to find the most relevant references on this object.
More on score
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
2004MNRAS.352.1439H viz 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...625..951K 24 30 A search for giant pulses from millisecond pulsars. KNIGHT H.S., BAILES M., MANCHESTER R.N., et al.
2006ApJ...640..941K 37   K                 17 31 Green Bank Telescope studies of giant pulses from millisecond pulsars. KNIGHT H.S., BAILES M., MANCHESTER R.N., et al.
2006Sci...311.1901H 21 14 596 A radio pulsar spinning at 716 Hz. HESSELS J.W.T., RANSOM S.M., STAIRS I.H., 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.
2008A&A...492..923S viz 15       D               2 271 100 Pulsar timing for the Fermi gamma-ray space telescope. SMITH D.A., GUILLEMOT L., CAMILO F., et al.
2010ApJ...710..828A 15       D               1 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.
2010ApJ...713..671A viz 15       D               2 126 175 Searches for gravitational waves from known pulsars with science run 5 LIGO data. ABBOTT B.P., ABBOTT R., ACERNESE F., 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.
2008Ap.....51..403S 15       D               3 15 0 Spin-down of millisecond pulsars owing to gravitational wave emission. SEDRAKIAN D.M., HAYRAPETYAN M.V. and SEDRAKIAN L.R.
2010NewAR..54...80B 38           X         1 19 6 Curious properties of the recycled pulsars and the potential of high precision timing. BAILES M.
2011MNRAS.414.1679E viz 15       D               1 641 395 A study of 315 glitches in the rotation of 102 pulsars. ESPINOZA C.M., LYNE A.G., STAPPERS B.W., et al.
2013ApJS..208...17A viz 17       D               1 207 759 The second Fermi large area telescope catalog of gamma-ray pulsars. ABDO A.A., AJELLO M., ALLAFORT A., et al.
2013MNRAS.434.1387L 211       D     X   F     5 55 31 The high time resolution universe pulsar survey -VIII. The galactic millisecond pulsar population. LEVIN L., BAILES M., BARSDELL B.R., et al.
2014ApJ...785..119A viz 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.
2014A&A...570A..44H 393           X C       9 25 14 Six faint gamma-ray pulsars seen with the Fermi Large Area Telescope. Towards a sample blending into the background. HOU X., SMITH D.A., GUILLEMOT L., et al.
2015ApJS..218...23A viz 16       D               1 3139 1411 Fermi Large Area Telescope third source catalog. ACERO F., ACKERMANN M., AJELLO M., et al.
2015MNRAS.450.2185L 16       D               1 55 33 The Parkes multibeam pulsar survey - VII. Timing of four millisecond pulsars and the underlying spin-period distribution of the Galactic millisecond pulsar population. LORIMER D.R., ESPOSITO P., MANCHESTER R.N., et al.
2015MNRAS.450.2922N viz 16       D               1 517 56 The High Time Resolution Universe Pulsar Survey - XII. Galactic plane acceleration search and the discovery of 60 pulsars. NG C., CHAMPION D.J., BAILES M., et al.
2015ApJ...812...15B 57       D     X         2 38 125 Disrupted globular clusters can explain the Galactic Center gamma-ray excess. BRANDT T.D. and KOCSIS B.
2015MNRAS.453..828K 95       D         F     3 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.453.4399P 16       D               1 45 5 First results and future prospects for dual-harmonic searches for gravitational waves from spinning neutron stars. PITKIN M., GILL C., JONES D.I., et al.
2016MNRAS.455.1665B 83               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 16       D               2 63 36 The NANOGrav nine-year data set: astrometric measurements of 37 millisecond pulsars. MATTHEWS A.M., NICE D.J., FONSECA E., et al.
2016ApJ...820....8S viz 16       D               1 3046 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.
2016MNRAS.457.4421C 96       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.458.1267V 22       D               3 51 323 The International Pulsar Timing Array: First data release. VERBIEST J.P.W., LENTATI L., HOBBS G., et al.
2016MNRAS.458.2161L 17       D               2 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 viz 341       D     X C       8 80 351 High-precision timing of 42 millisecond pulsars with the European Pulsar Timing Array. DESVIGNES G., CABALLERO R.N., LENTATI L., et al.
2016ApJ...829..119F viz 16       D               1 321 18 Known pulsars identified in the GMRT 150 MHz all-sky survey. FRAIL D.A., JAGANNATHAN P., MOOLEY K.P., et al.
2017ApJ...839...12A viz 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.
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.
2018MNRAS.478.2359L 16       D               1 65 7 High-precision pulsar timing and spin frequency second derivatives. LIU X.J., BASSA C.G. and STAPPERS B.W.
2018ApJ...864...23L 16       D               1 85 32 X-ray census of millisecond pulsars in the galactic field. LEE J., HUI C.Y., TAKATA J., et al.
2018MNRAS.481.3966B 16       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.
2018RAA....18...89M 16       D               1 162 ~ Radio pulsars with expected gamma radiation and gamma-ray pulsars as pulsating radio emitters. MALOV I.F. and TIMIRKEEVA M.A.
2019MNRAS.486.4098I 17       D               1 250 3 Wide binary companions to massive stars and their use in constraining natal kicks. IGOSHEV A.P. and PERETS H.B.
2019ApJ...879...10A viz 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...627A..13B viz 17       D               1 254 20 Second AGILE catalogue of gamma-ray sources. BULGARELLI A., FIORETTI V., PARMIGGIANI N., 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.
2019MNRAS.490.4666P 103       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.
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.
2020MNRAS.493.2188G 85           X         2 15 ~ Discovery of a new supernova remnant G21.8-3.0. GAO X.Y., REICH P., REICH W., et al.
2020ApJS..247...33A viz 17       D               1 5180 880 Fermi Large Area Telescope fourth source catalog. ABDOLLAHI S., ACERO F., ACKERMANN M., et al.
2021MNRAS.501..701Y 17       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.
2021MNRAS.501.1116A viz 87           X         2 44 24 Gaia pulsars and where to find them. ANTONIADIS J.
2021MNRAS.505.5853G 17       D               2 5840 ~ Artificial Neural Network classification of 4FGL sources. GERMANI S., TOSTI G., LUBRANO P., et al.
2021ApJS..255....5A viz 17       D               1 977 ~ The CHIME pulsar project: system overview. AMIRI M., BANDURA K.M., BOYLE P.J., et al.
2021ApJ...916..100R viz 17       D               1 422 2 Analyzing the Galactic pulsar distribution with machine learning. RONCHI M., GRABER V., GARCIA-GARCIA A., et al.
2022MNRAS.510.4873A 93               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...927..117W 18       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.
2022ApJS..260...53A viz 18       D               1 6714 133 Incremental Fermi Large Area Telescope Fourth Source Catalog. ABDOLLAHI S., ACERO F., BALDINI L., et al.
2022ApJ...934...65K 18       D               1 191 3 The Fundamental Plane Relation for Gamma-Ray Pulsars Implied by 4FGL. KALAPOTHARAKOS C., WADIASINGH Z., HARDING A.K., et al.
2023MNRAS.518.1802S 19       D               2 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.
2023MNRAS.519.3976M 19       D               2 78 18 The MeerKAT Pulsar Timing Array: first data release. MILES M.T., SHANNON R.M., BAILES M., et al.
2023ApJ...951L...9A 205       D     X C       4 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 93             C       1 72 14 The NANOGrav 15 yr Data Set: Detector Characterization and Noise Budget. AGAZIE G., ANUMARLAPUDI A., ARCHIBALD A.M., et al.
2023RAA....23g5024X 94               F     2 56 95 Searching for the Nano-Hertz Stochastic Gravitational Wave Background with the Chinese Pulsar Timing Array Data Release I. XU H., CHEN S., GUO Y., et al.
2023ApJ...951L..50A 19       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...954...89M 765       D S   X C       15 13 ~ Improving Distances to Binary Millisecond Pulsars with Gaia. MORAN A., MINGARELLI C.M.F., BEDELL M., et al.
2023A&A...678A..48E 345       D     X C       7 25 ~ The second data release from the European Pulsar Timing Array I. The dataset and timing analysis. EPTA COLLABORATION, ANTONIADIS J., BABAK S., et al.
2023A&A...678A..49E 159       D     X         4 25 ~ The second data release from the European Pulsar Timing Array II. Customised pulsar noise models for spatially correlated gravitational waves. EPTA COLLABORATION AND INPTA COLLABORATION, ANTONIADIS J., ARUMUGAM P., et al.
2023A&A...678A..50E 93               F     2 26 ~ The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals. EPTA COLLABORATION AND INPTA COLLABORATION, ANTONIADIS J., ARUMUGAM P., et al.
2023ApJ...958..191S 19       D               4 504 ~ The Third Fermi Large Area Telescope Catalog of Gamma-Ray Pulsars. SMITH D.A., ABDOLLAHI S., AJELLO M., et al.
2023A&A...679A..17P 19       D               1 140 ~ Improving the spin-down limits of the continuous gravitational waves emitted from rotating triaxial pulsars. PATHAK D. and CHATTERJEE D.
2023RAA....23l5020W 19       D               1 65 ~ Effect of Matching Algorithm and Profile Shape on Pulsar Pulse Time of Arrival Uncertainties. WANG J., VERBIEST J.P.W., SHAIFULLAH G.M., et al.
2024A&A...683A.201V 20       D               1 25 ~ Testing strengths, limitations, and biases of current pulsar timing arrays' detection analyses on realistic data. VALTOLINA S., SHAIFULLAH G., SAMAJDAR A., et al.

goto View the references in ADS