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We study properties of luminous X-ray pulsars using a simplified model of the accretion column. The maximal possible luminosity is calculated as a function of the neutron star (NS) magnetic field and spin period. It is shown that the…

High Energy Astrophysical Phenomena · Physics 2015-12-31 Alexander A. Mushtukov , Valery F. Suleimanov , Sergey S. Tsygankov , Juri Poutanen

Most ultraluminous X-ray sources (ULXs) are thought to be powered by neutron stars and black holes accreting beyond the Eddington limit. If the compact object is a black hole or a neutron star with a magnetic field $\lesssim10^{12}$ G, the…

We discuss properties of the ultra-luminous $X$-ray source in the galaxy M82, NuSTAR J095551+6940.8, containing an accreting neutron star. The neutron star has surface magnetic field $ B_{NS} \approx 1.4 \times 10^{13 } \, {\rm G}$ and…

High Energy Astrophysical Phenomena · Physics 2014-11-03 Maxim Lyutikov

Ultraluminous X-ray sources (ULXs) were identified as a separate class of objects in 2000 based on data from the Chandra X-Ray Observatory. These are unique objects: their X-ray luminosities exceed the Eddington limit for a typical…

Astrophysics of Galaxies · Physics 2021-05-25 S. N. Fabrika , K. E. Atapin , A. S. Vinokurov , O. N. Sholukhova

Ultraluminous pulsars are a definite proof that persistent super-Eddington accretion occurs in nature. They support the scenario according to which most Ultraluminous X-ray Sources (ULXs) are super-Eddington accretors of stellar mass rather…

High Energy Astrophysical Phenomena · Physics 2018-07-04 P. Kosec , C. Pinto , D. J. Walton , A. C. Fabian , M. Bachetti , M. Brightman , F. Fürst , B. W. Grefenstette

Various arguments strongly suggest that the population of ultraluminous X-ray sources (ULXs: apparent X-ray luminosity > Eddington limit for 10 Msun ~10^39 erg/s) in nearby galaxies are mostly stellar-mass X-ray binaries in unusual…

Astrophysics · Physics 2009-11-10 Andrew R. King , Walter Dehnen

The origin of Ultraluminous X-ray sources (ULXs) in external galaxies whose X-ray luminosities exceed those of the brightest black holes in our Galaxy by hundreds and thousands of times is mysterious. The most popular models for the ULXs…

High Energy Astrophysical Phenomena · Physics 2016-01-27 Sergei Fabrika , Alexander Vinokurov , Kirill Atapin

Ultraluminous X-ray sources (ULXs) represent a class of binary systems that are more luminous than any black hole in our Galaxy. The nature of these objects remained unclear for a long time. The most popular models for the ULXs involve…

High Energy Astrophysical Phenomena · Physics 2018-12-07 Kirill Atapin

We consider ultraluminous X-ray sources (ULXs) where the accretor is a neutron star rather than a black hole. We show that the recently-discovered example (M82 X-2) fits naturally into the simple picture of ULXs as beamed X-ray sources fed…

High Energy Astrophysical Phenomena · Physics 2016-02-17 Andrew King , Jean-Pierre Lasota

We perform general relativistic radiation magnetohydrodynamics (MHD) simulations of super-Eddington accretion flows around a neutron star with a dipole magnetic field for modeling the galactic ultra-luminous X-ray source (ULX) exhibiting…

High Energy Astrophysical Phenomena · Physics 2023-07-26 Akihiro Inoue , Ken Ohsuga , Hiroyuki R. Takahashi , Yuta Asahina

Most ultraluminous X-ray sources (ULXs) are believed to be stellar mass black holes or neutron stars accreting beyond the Eddington limit. Determining the nature of the compact object and the accretion mode from broadband spectroscopy is…

Ultraluminous X-ray sources are extragalactic, off-nucleus, point sources in galaxies with an X-ray luminosity above 3x10^39 erg/s, thought to be powered by accretion onto a compact object. Possible explanations include accretion onto…

High Energy Astrophysical Phenomena · Physics 2016-05-02 Ciro Pinto , Matthew J. Middleton , Andrew C. Fabian

Ultraluminous X-ray sources (ULX) are extragalactic objects with X-ray luminosities above the Eddington limit for a 10 Msun black hole (BH). ULXs may host super-Eddington accreting neutron stars or stellar mass BH, although the exact…

Most ULXs are believed to be powered by super-Eddington accreting neutron stars and, perhaps, black holes. Above the Eddington rate the disc is expected to thicken and to launch powerful winds through radiation pressure. Winds have been…

We present a model for a super-Eddington accretion disc around a magnetized neutron star taking into account advection of heat and the mass loss by the wind. The model is semi-analytical and predicts radial profiles of all basic physical…

High Energy Astrophysical Phenomena · Physics 2019-06-05 Anna Chashkina , Galina Lipunova , Pavel Abolmasov , Juri Poutanen

It is now widely accepted that most ultraluminous X-ray sources (ULXs) are binary systems whose large (above $10^{39}$ erg s$^{-1}$) apparent luminosities are explained by super-Eddington accretion onto a stellar-mass compact object. Many…

High Energy Astrophysical Phenomena · Physics 2020-11-25 Jean-Marie Hameury , Jean-Pierre Lasota

The recent detection of pulsations from the ultra luminous X-ray source (ULX) NuSTAR J095551+6940.8 in M82 by Bachetti et al. indicates that the object is an accreting neutron star in a high mass X-ray binary (HMXB) system. The…

High Energy Astrophysical Phenomena · Physics 2015-01-13 K. Y. Ekşi , İ. C. Andaç , S. Çıkıntoğlu , A. A. Gençali , C. Güngör , F. Öztekin

Ultra-luminous X-ray sources (ULXs) are the most extreme members of the X-ray binary population, exhibiting X-ray luminosities that can surpass the 10^39 erg/s threshold (by orders of magnitude). They are mainly seen in external galaxies…

High Energy Astrophysical Phenomena · Physics 2023-02-02 Ciro Pinto , Dominic J. Walton

Ultraluminous X-ray sources (ULXs) are amongst the most intriguing of X-ray source classes. Their extreme luminosities - greater than 10^39 erg/s in the 0.3 - 10 keV band alone - suggest either the presence of black holes larger than those…

Astrophysics · Physics 2008-11-26 T. P. Roberts

I suggest that the beaming factor in bright ULXs varies as $b \propto \dot m^{-2}$, where $\dot m$ is the Eddington ratio for accretion. This is required by the observed universal $L_{\rm soft} \propto T^{-4}$ relation between soft--excess…

Astrophysics · Physics 2009-11-13 A. R. King