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NAME NGC 5907 ULX , the SIMBAD biblio (141 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.10.02CEST20:25:39 |
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 |
---|---|---|---|---|---|---|---|---|---|
2011ApJ...741...49S ![]() |
15 | D | 2 | 169 | 167 | A complete sample of ultraluminous X-ray source host galaxies. | SWARTZ D.A., SORIA R., TENNANT A.F., et al. | ||
2011MNRAS.416.1844W ![]() |
256 | 134 | 2XMM ultraluminous X-ray source candidates in nearby galaxies. | WALTON D.J., ROBERTS T.P., MATEOS S., et al. | |||||
2012MNRAS.423.1154S | 1 | 49 | 121 | The most extreme ultraluminous X-ray sources: evidence for intermediate-mass black holes? | SUTTON A.D., ROBERTS T.P., WALTON D.J., 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. | ||
2013MNRAS.434.1702S | 1668 | D | X C F | 41 | 11 | 16 | A bright ultraluminous X-ray source in NGC 5907. | SUTTON A.D., ROBERTS T.P., GLADSTONE J.C., et al. | |
2013MNRAS.435.1758S | 492 | D | X C | 12 | 22 | 179 | The ultraluminous state revisited: fractional variability and spectral shape as diagnostics of super-Eddington accretion. | SUTTON A.D., ROBERTS T.P. and MIDDLETON M.J. | |
2013MNRAS.436.3128M | 134 | D | X | 4 | 29 | 27 | Radio observations of extreme ULXs: revealing the most powerful ULX radio nebula ever or the jet of an intermediate-mass black hole ? | MEZCUA M., ROBERTS T.P., SUTTON A.D., et al. | |
2013ApJ...779..148W | 40 | X | 1 | 17 | 57 | An extremely luminous and variable ultraluminous X-ray source in the outskirts of Circinus observed with NuSTAR. | WALTON D.J., FUERST F., HARRISON F., et al. | ||
2015ApJ...799..122W | 1832 | T K A | X C | 44 | 9 | 24 |
NuSTAR and XMM-Newton observations of the extreme ultraluminous X-ray source NGC 5907 ULX1: a vanishing act. |
WALTON D.J., HARRISON F.A., BACHETTI M., et al. | |
2015NewA...37....1Z | 24 | 3 | On the black hole masses in ultra-luminous X-ray sources. | ZHOU X.-L. | |||||
2016A&A...587A..38W | 122 | X C | 2 | 9 | 3 | Limits on thickness and efficiency of Polish doughnuts in application to the ULX sources. | WIELGUS M., YAN W., LASOTA J.-P., et al. | ||
2016ApJ...827L..13W | 958 | T K A | X C | 22 | 15 | 14 |
A 78 day X-ray period detected from NGC 5907 ULX1 by Swift. |
WALTON D.J., FURST F., BACHETTI M., et al. | |
2017ApJ...834...77F | 1061 | T K A | X C | 24 | 9 | 68 | Spectral changes in the hyperluminous pulsar in NGC 5907 as a function of super-orbital phase. | FURST F., WALTON D.J., STERN D., et al. | |
2017ApJ...835L...9H | 124 | X | 3 | 8 | 12 | Swift detection of a 65 day X-ray period from the ultraluminous pulsar NGC 7793 P13. | HU C.-P., LI K.L., KONG A.K.H., et al. | ||
2017Sci...355..817I | 84 | 4 | 337 | An accreting pulsar with extreme properties drives an ultraluminous x-ray source in NGC 5907. | ISRAEL G.L., BELFIORE A., STELLA L., et al. | ||||
2017ApJ...836..113P | 349 | D | X | 9 | 25 | 85 | Pulsator-like spectra from ultraluminous X-ray sources and the search for more ultraluminous pulsars. | PINTORE F., ZAMPIERI L., STELLA L., et al. | |
2017ApJ...838...47Y | 41 | X | 1 | 18 | 6 | Identification of the hard X-ray source dominating the E < 25 keV emission of the nearby galaxy M31. | YUKITA M., PTAK A., HORNSCHEMEIER A.E., et al. | ||
2017ApJ...838...98X | 82 | X | 2 | 6 | 2 | On the magnetic field of the ultraluminous X-ray pulsar M82 X-2. | XU K. and LI X.-D. | ||
2017ApJ...839..105W | 124 | X C | 2 | 6 | 7 | The broadband spectral variability of Holmberg IX X-1. | WALTON D.J., FURST F., HARRISON F.A., et al. | ||
2017MNRAS.466L..48I | 96 | X | 1 | 5 | 276 | Discovery of a 0.42-s pulsar in the ultraluminous X-ray source NGC 7793 P13. | ISRAEL G.L., PAPITTO A., ESPOSITO P., et al. | ||
2017MNRAS.466.2236D | 479 | K A | X C | 11 | 7 | 14 | Modelling the light curves of ultraluminous X-ray sources as precession. | DAUSER T., MIDDLETON M. and WILMS J. | |
2017MNRAS.467.1202M | 134 | X | 3 | 7 | 82 | Optically thick envelopes around ULXs powered by accreating neutron stars. | MUSHTUKOV A.A., SULEIMANOV V.F., TSYGANKOV S.S., et al. | ||
2017MNRAS.468L..59K | 211 | D | X | 5 | 3 | 92 | Pulsing ULXs: tip of the iceberg? | KING A., LASOTA J.-P. and KLUZNIAK W. | |
2017AstL...43..464G | 3 | 1 | The nature of the bimodal luminosity distribution of ultraluminous X-ray pulsars. | GREBENEV S.A. | |||||
2017RAA....17...63C | 288 | X | 7 | 19 | 6 | The Great Pretenders among the ULX class. | CHRISTODOULOU D.M., LAYCOCK S.G.T., KAZANAS D., et al. | ||
2017ApJ...846...17W | 89 | X | 2 | 8 | 61 | The origin of the ultraluminous X-ray sources. | WIKTOROWICZ G., SOBOLEWSKA M., LASOTA J.-P., et al. | ||
2017MNRAS.470.2799C | 91 | X | 2 | 4 | 39 | Super-Eddington accretion on to a magnetized neutron star. | CHASHKINA A., ABOLMASOV P. and POUTANEN J. | ||
2017ApJ...849..121J | 41 | X | 1 | 18 | 2 | Long-term spectral variability of the ultraluminous X-ray source Holmberg IX X-1. | JITHESH V., MISRA R. and WANG Z. | ||
2017ApJ...850...65C | 41 | X | 1 | 8 | 1 | Search for optical pulsation in M82 X-2. | COLLURA G., STRADER P., MEEKER S.R., et al. | ||
2017A&A...608A..47K | 389 | D | X | 10 | 39 | 81 | ULX spectra revisited: Accreting, highly magnetized neutron stars as the engines of ultraluminous X-ray sources. | KOLIOPANOS F., VASILOPOULOS G., GODET O., et al. | |
2017MNRAS.472.3683F | 82 | X | 2 | 11 | 2 | The binary black hole merger rate from ultraluminous X-ray source progenitors. | FINKE J.D. and RAZZAQUE S. | ||
2018MNRAS.473..136J | 142 | D | X | 4 | 56 | 5 | Measuring the black hole mass in ultraluminous X-ray sources with the X-ray scaling method. | JANG I., GLIOZZI M., SATYAPAL S., et al. | |
2018ApJ...853..115W | 125 | A | D | X | 4 | 12 | 10 | Evidence for precession due to supercritical accretion in ultraluminous X-ray sources. | WENG S.-S. and FENG H. |
2018MNRAS.473.3204I | 42 | X | 1 | 14 | 5 | How to make a mature accreting magnetar. | IGOSHEV A.P. and POPOV S.B. | ||
2018MNRAS.473.4360W | 672 | X C F | 14 | 15 | 53 | Super-Eddington accretion on to the neutron star NGC 7793 P13: Broad-band X-ray spectroscopy and ultraluminous X-ray sources. | WALTON D.J., FURST F., HARRISON F.A., et al. | ||
2018ApJ...854..176V | 43 | X | 1 | 23 | 27 | Optical counterparts of ultraluminous X-ray sources NGC 4559 X-10 and NGC 4395 ULX-1. | VINOKUROV A., FABRIKA S. and ATAPIN K. | ||
2018MNRAS.475..154M | 86 | X | 2 | 7 | 16 | Lense-Thirring precession in ULXs as a possible means to constrain the neutron star equation of state. | MIDDLETON M.J., FRAGILE P.C., BACHETTI M., et al. | ||
2018ApJ...856..128W | 2013 | K A | D | S X C | 47 | 14 | 107 | Evidence for pulsar-like emission components in the broadband ULX sample. | WALTON D.J., FURST F., HEIDA M., et al. |
2018MNRAS.474.4564K | 1170 | A | D | S X | 28 | 3 | 1 | The nature of donors in ultraluminous X-ray binaries powered by neutron stars. | KARINO S. |
2018ApJ...857L...3W | 295 | X | 7 | 10 | 25 | A potential cyclotron resonant scattering feature in the ultraluminous X-ray source pulsar NGC 300 ULX1 seen by NuSTAR and XMM-Newton. | WALTON D.J., BACHETTI M., FURST F., et al. | ||
2018MNRAS.476L..45C | 147 | X | 3 | 9 | 202 | Discovery of pulsations from NGC 300 ULX1 and its fast period evolution. | CARPANO S., HABERL F., MAITRA C., et al. | ||
2018MNRAS.476.2867M | 695 | A | S X C F | 14 | 3 | 3 | Ultraluminous X-ray sources as neutrino pulsars. | MUSHTUKOV A.A., TSYGANKOV S.S., SULEIMANOV V.F., et al. | |
2018MNRAS.476.4272E | 125 | X | 3 | 23 | 14 | Searching for propeller-phase ULXs in the XMM-Newton Serendipitous Source Catalogue. | EARNSHAW H.P., ROBERTS T.P. and SATHYAPRAKASH R. | ||
2018A&A...612L..12R | 1446 | A | S X C | 33 | 8 | 1 | Ultraluminous X-ray sources: new distance indicators? | ROZANSKA A., BRESLER K., BELDYCKI B., et al. | |
2018MNRAS.477L..90P | 418 | X C | 9 | 13 | 10 | A new ultraluminous X-ray source in the galaxy NGC 5907. | PINTORE F., BELFIORE A., NOVARA G., et al. | ||
2018MNRAS.477.3623W | 42 | X | 1 | 20 | 1 | Discovery of two eclipsing X-ray binaries in M 51. | WANG S., SORIA R., URQUHART R., et al. | ||
2018ApJ...861L...7B | 84 | X | 2 | 14 | 8 | Discovery of pulsation dropout and turn-on during the high state of the accreting X-ray pulsar LMC X-4. | BRUMBACK M.C., HICKOX R.C., BACHETTI M., et al. | ||
2018ApJ...863....9W | 49 | X | 1 | 12 | 90 | NICER and Fermi GBM observations of the first galactic ultraluminous X-ray pulsar Swift J0243.6+6124. | WILSON-HODGE C.A., MALACARIA C., JENKE P.A., et al. | ||
2018ApJ...864...64H | 42 | X | 1 | 10 | 3 | NGC 7793 P9: an ultraluminous X-ray source evolved from a canonical black hole X-ray binary. | HU C.-P., KONG A.K.H., NG C.-Y., et al. | ||
2018A&A...616A.186F | 236 | A | X | 6 | 8 | 16 | A tale of two periods: determination of the orbital ephemeris of the super-Eddington pulsar NGC 7793 P13. | FURST F., WALTON D.J., HEIDA M., et al. | |
2018MNRAS.479.4271P | 209 | X C F | 3 | 10 | 3 | The two ultraluminous X-ray sources in the galaxy NGC 925. | PINTORE F., ZAMPIERI L., MEREGHETTI S., et al. | ||
2018MNRAS.480.2357K | 42 | X | 1 | 10 | 2 | NuSTAR observations of the ultraluminous X-ray source M33 X-8: a black hole in a very high state? | KRIVONOS R., SAZONOV S., TSYGANKOV S.S., et al. | ||
2018ApJ...867..110B | 42 | X | 1 | 17 | 6 | A long hard-X-Ray look at the dual active galactic nuclei of M51 with NuSTAR. | BRIGHTMAN M., BALOKOVIC M., KOSS M., et al. | ||
2018ApJ...868..125J | 42 | X | 1 | 15 | ~ | Exploring the spectral variability of the ultraluminous X-ray source M81 X-6 with Suzaku and XMM-Newton. | JITHESH V. and MISRA R. | ||
2019MNRAS.482L..24M | 43 | X | 1 | 12 | 8 | Ultraluminous X-ray sources as magnetically powered sub-Eddington advective accretion flows around stellar mass black holes. | MONDAL T. and MUKHOPADHYAY B. | ||
2018ApJ...869..111W | 251 | X | 6 | 13 | 2 | On the nature of the X-ray emission from the ultraluminous X-ray source, M33 X-8: new constraints from NuSTAR and XMM-Newton. | WEST L.A., LEHMER B.D., WIK D., et al. | ||
2017PASJ...69...92K | 43 | X | 1 | 4 | 11 | Theoretical modeling of Comptonized X-ray spectra of super-Eddington accretion flow: Origin of hard excess in ultraluminous X-ray sources. | KITAKI T., MINESHIGE S., OHSUGA K., et al. | ||
2019MNRAS.482.4956T | 315 | D | X F | 7 | 10 | 7 | Accreting magnetars: linking ultraluminous X-ray pulsars and the slow pulsation X-ray pulsars. | TONG H. and WANG W. | |
2019MNRAS.483.5554E ![]() |
128 | X | 3 | 67 | 44 | A new, clean catalogue of extragalactic non-nuclear X-ray sources in nearby galaxies. | EARNSHAW H.P., ROBERTS T.P., MIDDLETON M.J., et al. | ||
2019ApJ...871..231H | 1192 | K A | D | X C | 28 | 16 | 4 | Searching for the donor stars of ULX pulsars. | HEIDA M., HARRISON F.A., BRIGHTMAN M., et al. |
2018ATel11158....1C | 42 | X | 1 | 7 | ~ | Title: Detection of a 31.6 s pulse period for the supernova impostor SN 2010da in NGC 300, observed in ULX state. | CARPANO S., HABERL F. and MAITRA C. | ||
2019MNRAS.484..687M | 48 | X | 1 | 8 | 43 | Timing properties of ULX pulsars: optically thick envelopes and outflows. | MUSHTUKOV A.A., INGRAM A., MIDDLETON M., et al. | ||
2019ApJ...873...19T | 45 | X | 1 | 15 | 34 | Super-Eddington accretion onto the Galactic ultraluminous X-ray pulsar Swift J0243.6+6124. | TAO L., FENG H., ZHANG S., et al. | ||
2019ApJ...873..115B | 196 | A | X | 5 | 16 | 9 | A ∼60 day super-orbital period originating from the ultraluminous X-ray pulsar in M82. | BRIGHTMAN M., HARRISON F.A., BACHETTI M., et al. | |
2018RAA....18..128C | 17 | D | 2 | 14 | ~ | A striking confluence between theory and observations of high-mass X-ray binary pulsars. | CHRISTODOULOU D., LAYCOCK S. and KAZANAS D. | ||
2019ApJ...875...68A | 43 | X | 1 | 18 | ~ | Optical counterparts of ULXs and their host environments in NGC 4490/4485. | AVDAN S., AKYUZ A., VINOKUROV A., et al. | ||
2019ApJ...875..144P | 128 | X | 3 | 11 | 5 | Observing the transient pulsations of SMC X-1 with NuSTAR. | PIKE S.N., HARRISON F.A., BACHETTI M., et al. | ||
2019MNRAS.485.3588K | 231 | D | S X | 5 | 36 | 52 | No magnetars in ULXs. | KING A. and LASOTA J.-P. | |
2019MNRAS.486.5709L | 43 | X | 1 | 19 | ~ | X-ray properties of two transient ULX candidates in galaxy NGC 7090. | LIU Z., O'BRIEN P.T., OSBORNE J.P., et al. | ||
2019ApJ...879...34C | 85 | X | 2 | 19 | 8 | A study of the 20 day superorbital modulation in the high-mass X-ray binary IGR J16493-4348. | COLEY J.B., CORBET R.H.D., FURST F., et al. | ||
2019A&A...626A..18C | 625 | A | S X C | 13 | 8 | 37 | Super-Eddington accretion discs with advection and outflows around magnetized neutron stars. | CHASHKINA A., LIPUNOVA G., ABOLMASOV P., et al. | |
2019MNRAS.488.5225V | 44 | X | 1 | 5 | 6 | NGC 300 ULX1: spin evolution, super-Eddington accretion, and outflows. | VASILOPOULOS G., PETROPOULOU M., KOLIOPANOS F., et al. | ||
2019MNRAS.488.5935A | 43 | X | 1 | 12 | ~ | Optical counterparts of an ultraluminous X-Ray Source X-1 in NGC 2500. | AKSAKER N., AKYUZ A., AVDAN S., et al. | ||
2018PASJ...70..108K | 42 | X | 1 | 9 | 5 | Systematic two-dimensional radiation-hydrodynamic simulations of super-Eddington accretion flow and outflow: Comparison with the slim disk model. | KITAKI T., MINESHIGE S., OHSUGA K., et al. | ||
2019MNRAS.489..366K | 43 | X | 1 | 27 | ~ | A new possible accretion scenario for ultra-luminous X-ray sources. | KOBAYASHI S.B., NAKAZAWA K. and MAKISHIMA K. | ||
2019ApJ...886..118S | 60 | D | X | 2 | 9 | ~ | A population of neutron star ultraluminous X-ray sources with a helium star companion. | SHAO Y., LI X.-D. and DAI Z.-G. | |
2020MNRAS.491.1260S | 653 | A | D | X C | 15 | 58 | ~ | The hunt for pulsating ultraluminous X-ray sources. | SONG X., WALTON D.J., LANSBURY G.B., et al. |
2020ApJ...889...71B | 131 | X | 3 | 11 | ~ | Spectral evolution of the ultraluminous X-ray sources M82 X-1 and X-2. | BRIGHTMAN M., WALTON D.J., XU Y., et al. | ||
2020ApJ...890..166P | 174 | X | 4 | 28 | ~ | The ultraluminous X-ray sources population of the galaxy NGC 7456. | PINTORE F., MARELLI M., SALVATERRA R., et al. | ||
2020ApJ...891...44B | 45 | X | 1 | 16 | 30 | All at once: transient pulsations, spin-down, and a glitch from the pulsating ultraluminous X-ray source M82 X-2. | BACHETTI M., MACCARONE T.J., BRIGHTMAN M., et al. | ||
2020ApJ...891..153E | 87 | X | 2 | 6 | ~ | The (re)appearance of NGC 925 ULX-3, a new transient ULX. | EARNSHAW H.P., HEIDA M., BRIGHTMAN M., et al. | ||
2020NatAs...4..147B | 2681 | A | X C | 61 | 6 | ~ | Diffuse X-ray emission around an ultraluminous X-ray pulsar. | BELFIORE A., ESPOSITO P., PINTORE F., et al. | |
2020ApJ...895...60R | 93 | X | 2 | 17 | 118 | Discovery of a 28 s pulsar in a 2 day orbit high-mass X-ray binary powering the ultraluminous X-ray source ULX-7 in M51. | RODRIGUEZ CASTILLO G.A., ISRAEL G.L., BELFIORE A., et al. | ||
2020ApJ...895..127B | 192 | D | X | 5 | 29 | 24 | Swift monitoring of M51: a 38 day superorbital period for the pulsar ULX7 and a new transient ultraluminous X-ray source. | BRIGHTMAN M., EARNSHAW H., FURST F., et al. | |
2020MNRAS.494.3611K | 17 | D | 2 | 13 | ~ | Pulsing and non-pulsing ULXs: the iceberg emerges. | KING A. and LASOTA J.-P. | ||
2020MNRAS.494.4026J | 131 | X | 3 | 11 | ~ | Broadband X-ray spectral study of ultraluminous X-ray source M81 X-6. | JITHESH V., ANJANA C. and MISRA R. | ||
2020MNRAS.495L.139T | 17 | D | 1 | 16 | ~ | Orbital and superorbital periods in ULX pulsars, disc-fed HMXBs, Be/X-ray binaries, and double-periodic variables. | TOWNSEND L.J. and CHARLES P.A. | ||
2020MNRAS.495..350M | 44 | X | 1 | 23 | ~ | Role of magnetically dominated disc-outflow symbiosis on bright hard-state black hole sources: ultra-luminous X-ray sources to quasars. | MONDAL T. and MUKHOPADHYAY B. | ||
2020MNRAS.495.2664C | 19 | D | 1 | 22 | 46 | Study of recent outburst in the Be/X-ray binary RX J0209.6-7427 with AstroSat: a new ultraluminous X-ray pulsar in the Magellanic Bridge? | CHANDRA A.D., ROY J., AGRAWAL P.C., et al. | ||
2020ApJ...896..124S ![]() |
61 | D | X | 2 | 18 | ~ | X-ray emission evolution of the Galactic ultraluminous X-ray pulsar Swift J0243.6+6124 during the 2017-2018 outburst observed by the MAXI GSC. | SUGIZAKI M., OEDA M., KAWAI N., et al. | |
2020MNRAS.497.5498W | 45 | X | 1 | 8 | 8 | Insight-HXMT observations of Swift J0243.6+6124: the evolution of RMS pulse fractions at super-Eddington luminosity. | WANG P.J., KONG L.D., ZHANG S., et al. | ||
2020ApJ...902..125A | 61 | D | X | 2 | 10 | ~ | Formation and evolution of ultraluminous X-ray pulsar binaries to pulsar-neutron star and Pulsar-white dwarf systems. | ABDUSALAM K., ABLIMIT I., HASHIM P., et al. | |
2020A&A...642A.174M | 149 | D | S X | 3 | 23 | 32 | The origin of pulsating ultra-luminous X-ray sources: Low- and intermediate-mass X-ray binaries containing neutron star accretors. | MISRA D., FRAGOS T., TAURIS T.M., et al. | |
2021MNRAS.500..565B | 45 | X | 1 | 12 | 11 | AstroSat observations of the first Galactic ULX pulsar Swift J0243.6+6124. | BERI A., NAIK S., SINGH K.P., et al. | ||
2021MNRAS.501.2424M | 232 | X C F | 3 | 4 | 35 | Pulsating ULXs: large pulsed fraction excludes strong beaming. | MUSHTUKOV A.A., PORTEGIES ZWART S., TSYGANKOV S.S., et al. | ||
2020ATel13791....1W | 44 | X | 1 | 3 | ~ | Chandra Constraints on the Current Low-Flux State of NGC 7793 P13. | WALTON D., FURST F., HEIDA M., et al. | ||
2021ApJ...909....5H | 45 | X | 1 | 8 | ~ | Possible periodic dips in the pulsating ultraluminous X-ray source M51 ULX-7. | HU C.-P., UEDA Y. and ENOTO T. | ||
2021ApJ...909...50V | 162 | A | X | 4 | 10 | 14 | Chandra probes the X-ray variability of M51 ULX-7: evidence of propeller transition and X-ray dips on orbital periods. | VASILOPOULOS G., KOLIOPANOS F., HABERL F., et al. | |
2020PASJ...72...15K | 44 | X | 1 | 4 | ~ | Super-critical column accretion on to strongly magnetized neutron stars in ULX pulsars. | KAWASHIMA T. and OHSUGA K. | ||
2020PASJ...72...34I | 44 | X | 1 | 7 | ~ | Pulsed fraction of super-critical column accretion flows on to neutron stars: Modeling of ultraluminous X-ray pulsars. | INOUE A., OHSUGA K. and KAWASHIMA T. | ||
2021MNRAS.503.5485Q | 90 | X | 2 | 15 | 13 | A new candidate pulsating ULX in NGC 7793. | QUINTIN E., WEBB N.A., GURPIDE A., et al. | ||
2021MNRAS.504..701B | 654 | A | S X C F | 12 | 7 | ~ | Super-eddington emission from accreting, highly magnetized neutron stars with a multipolar magnetic field. | BRICE N., ZANE S., TUROLLA R., et al. | |
2021A&A...649L...2Z | 45 | X | 1 | 7 | ~ | Population synthesis on ultra-luminous X-ray sources with an accreting neutron star: Wind Roche-lobe overflow cases. | ZUO Z.-Y., SONG H.-T. and XUE H.-C. | ||
2021A&A...649A.104G ![]() |
555 | D | X | 13 | 26 | 23 | Long-term X-ray spectral evolution of ultraluminous X-ray sources: implications on the accretion flow geometry and the nature of the accretor. | GURPIDE A., GODET O., KOLIOPANOS F., et al. | |
2021MNRAS.505..771O | 45 | X | 1 | 30 | 1 | Optical counterparts of ULXs in two dwarf galaxies: NGC 4861 and NGC 4449. | OZDOGAN ELA M., AKYUZ A., AKSAKER N., et al. | ||
2021A&A...650A.167D ![]() |
45 | X | 1 | 18 | 12 | The EXTraS project: Exploring the X-ray transient and variable sky. | DE LUCA A., SALVATERRA R., BELFIORE A., et al. | ||
2021MNRAS.505.5058P | 47 | X | 1 | 13 | 29 | XMM-Newton campaign on the ultraluminous X-ray source NGC 247 ULX-1: outflows. | PINTO C., SORIA R., WALTON D.J., et al. | ||
2021ApJ...917...13S | 92 | C | 1 | 22 | 54 | Periodic fast radio bursts from luminous X-ray binaries. | SRIDHAR N., METZGER B.D., BENIAMINI P., et al. | ||
2021A&A...651A..54M | 45 | X | 1 | 12 | 7 | Spectral state transitions in Circinus ULX5. | MONDAL S., ROZANSKA A., BAGINSKA P., et al. | ||
2021A&A...651A..75F | 47 | X | 1 | 5 | 11 | Long-term pulse period evolution of the ultra-luminous X-ray pulsar NGC 7793 P13. | FURST F., WALTON D.J., HEIDA M., et al. | ||
2021MNRAS.507.1002K | 18 | D | 1 | 12 | 5 | High-mass X-ray binaries with Be donors as ultraluminous X-ray sources. | KARINO S. | ||
2021RAA....21..196G | 511 | K | D | S X | 11 | 11 | 4 | On the magnetic fields of ultraluminous X-ray pulsars. | GAO S.-J. and LI X.-D. |
2022MNRAS.509.1587W ![]() |
47 | X | 1 | 23 | 17 | A multimission catalogue of ultraluminous X-ray source candidates. | WALTON D.J., MACKENZIE A.D.A., GULLY H., et al. | ||
2022MNRAS.509.2493K | 140 | X | 3 | 10 | ~ | The impact of precession on the observed population of ULXs. | KHAN N., MIDDLETON M.J., WIKTOROWICZ G., et al. | ||
2022MNRAS.509.4694A | 140 | X | 3 | 12 | 2 | Modelling multiwavelength emission of Ultra-luminous X-ray Sources accreting above the Eddington limit. | AMBROSI E., ZAMPIERI L., PINTORE F., et al. | ||
2022ApJ...924...65L | 140 | X | 3 | 9 | 2 | Investigation of the timing and spectral properties of an ultraluminous X-ray pulsar NGC 7793 P13. | LIN L.C.-C., HU C.-P., TAKATA J., et al. | ||
2022ApJ...925...18B | 327 | X | 7 | 17 | 4 | Evolution of the Spin, Spectrum and Superorbital Period of the Ultraluminous X-Ray Pulsar M51 ULX7. | BRIGHTMAN M., BACHETTI M., EARNSHAW H., et al. | ||
2022MNRAS.510.4355A | 93 | X | 2 | 24 | 5 | The transient ultraluminous X-ray source, ULX-4, in M51. | ALLAK S., AKYUZ A., AKKAYA ORALHAN I., et al. | ||
2022MNRAS.511.4528U | 47 | X | 1 | 23 | 3 | Quasi-periodic whispers from a transient ULX in M 101: signatures of a fast-spinning neutron star? | URQUHART R.T., SORIA R., DI STEFANO R., et al. | ||
2022MNRAS.512.1814S | 47 | X | 1 | 8 | 4 | Investigating the nature of the ultraluminous X-ray sources in the galaxy NGC 925. | SALVAGGIO C., WOLTER A., PINTORE F., et al. | ||
2022A&A...659A.188B ![]() |
140 | X | 3 | 32 | 4 | An expanded ultraluminous X-ray source catalogue. | BERNADICH M.C.i., SCHWOPE A.D., KOVLAKAS K., et al. | ||
2022MNRAS.513.1400A | 65 | D | X | 2 | 37 | 6 | Average bolometric corrections and optical to X-ray flux measurements as a function of accretion rate for X-ray binaries. | ANASTASOPOULOU K., ZEZAS A., STEINER J.F., et al. | |
2022ApJ...929..138B | 93 | X | 2 | 19 | 3 | An 8.56 keV Absorption Line in the Hyperluminous X-Ray Source in NGC 4045: Ultrafast Outflow or Cyclotron Line?. | BRIGHTMAN M., KOSEC P., FURST F., et al. | ||
2022MNRAS.513.6219P | 47 | X | 1 | 7 | 4 | Study on the magnetic field strength of NGC 300 ULX1. | PAN Y.Y., LI Z.S., ZHANG C.M., et al. | ||
2022MNRAS.514.1054G | 373 | X C | 7 | 20 | 8 | Formation of mass-gap black holes from neutron star X-ray binaries with super-Eddington accretion. | GAO S.-J., LI X.-D. and SHAO Y. | ||
2022MNRAS.514.5457D | 140 | X | 3 | 6 | 2 | Monitoring observations of SMC X-1's excursions (MOOSE)-I. Programme description and initial high state spectral results. | DAGE K.C., Mc BRUMBACK K., NEILSEN J., et al. | ||
2022ApJ...934...42E | 47 | X | 1 | 6 | 1 | The Variability Behavior of NGC 925 ULX-3. | EARNSHAW H.P., BRIGHTMAN M., HARRISON F.A., et al. | ||
2022MNRAS.516.3972B | 93 | X | 2 | 12 | 2 | Unveiling the disc structure in ultraluminous X-ray source NGC 55 ULX-1. | BARRA F., PINTO C., WALTON D.J., et al. | ||
2022ApJ...938..149H | 47 | X | 1 | 8 | 6 | Fan-beamed X-Ray Emission from 1 to above 130 keV from the Ultraluminous X-Ray Pulsar RX J0209.6-7427 in the Small Magellanic Cloud. | HOU X., GE M.Y., JI L., et al. | ||
2022MNRAS.517.3495A | 47 | X | 1 | 12 | 3 | Detection of 125.5-day optical periodic modulation of the neutron star M51 ULX-8. | ALLAK S. | ||
2022RAA....22k5018M | 65 | D | X | 2 | 17 | ~ | Research on the Magnetic Field of NGC 7793 P13 and Other Confirmed Pulsating Ultraluminous X-Ray Sources. | MENG F.-L., PAN Y.-Y. and LI Z.-S. | |
2022ApJ...941..126H | 112 | D | X | 3 | 106 | ~ | Monte Carlo Simulations on Possible Collimation Effects of Outflows to Fan Beam Emission of Ultraluminous Accreting X-Ray Pulsars. | HOU X., YOU Y., JI L., et al. | |
2022ATel15809....1R | 140 | T | X | 2 | 1 | ~ |
Recent Swift Observations of NGC 5907 ULX-1. |
RAUL E., BACON S., BRUMBACK M., et al. | |
2023A&A...669A.130A | 50 | X | 1 | 18 | ~ | The ultraluminous X-ray source M 81 X-6: a weakly magnetised neutron star with a precessing accretion disc? | AMATO R., GURPIDE A., WEBB N.A., et al. | ||
2023ApJ...945....7G | 20 | D | 1 | 20 | ~ | Criteria for Dynamical Timescale Mass Transfer of Metal-poor Intermediate-mass Stars. | GE H., TOUT C.A., CHEN X., et al. | ||
2023ApJ...945...51P | 50 | X | 1 | 11 | ~ | Clumpy Wind Studies and the Nondetection of a Cyclotron Line in OAO 1657-415. | PRADHAN P., FERRIGNO C., PAUL B., et al. | ||
2023ApJ...948...45I | 50 | X | 1 | 12 | ~ | Investigating the Superorbital Modulations in 4U 1909 + 07, IGR J16418-4532, and IGR J16479-4514 with Swift XRT, BAT, and NuSTAR Observations. | ISLAM N., CORBET R.H.D., COLEY J.B., et al. | ||
2023ApJ...948...62G | 350 | A | D | X C | 7 | 2 | ~ | Synchrotron Cutoff in Ultraluminous X-Ray Sources. | GHOSH T., SETHI S. and RANA V. |
2023A&A...672A.140F | 1730 | T K A | X C | 33 | 12 | ~ |
Probing the nature of the low state in the extreme ultraluminous X-ray pulsar NGC 5907 ULX1. |
FURST F., WALTON D.J., ISRAEL G.L., et al. | |
2023MNRAS.518.5457M | 100 | C | 2 | 7 | 3 | Bright X-ray pulsars: how outflows influence beaming, pulsations and pulse phase lags. | MUSHTUKOV A.A. and PORTEGIES ZWART S. | ||
2023ATel16015....1W | 150 | T | X | 2 | 2 | ~ |
Investigating Swift Observations of NGC 5907 ULX-1 and Estimating its Luminosity. |
WANINK M., BRUMBACK M., GAISHIN A., et al. |
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