Context. Supergiant fast X-ray transient (SFXT) is a new class of the high-mass X-ray binary that shows short X-ray flares. The physical mechanism of SFXT short flares is still open for discussion. The accretion process of dense clumps in stellar wind onto neutron star (NS) has been proposed as the origin of such short flares. Aims. In order to examine the applicability of the clumpy wind scenario, we focus on the accretion mode that depends on orbital parameters. Our goal is to impose restrictions on the orbital parameters of SFXT. Methods. Assuming a simple analytic model of clumpy wind, we investigate the condition where the size of accretion cylinder overcomes...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are char...
Supergiant Fast X-ray Transients (SFXT) are a class of HMXB that have only recently been unveiled by...
Supergiant fast X-ray transients (SFXTs) are X-ray binary systems with a supergiant companion and li...
Context. Supergiant fast X-ray (SFXT) transients are a peculiar class of supergiant X-ray binaries c...
In the last eight years the INTEGRAL satellite has allowed to discover a new class of transient X-ra...
Context.INTEGRAL, the European Space Agency's γ-ray observatory, tripled the number of super-giant h...
© ESO, 2017. Context. Supergiant fast X-ray (SFXT) transients are a peculiar class of supergiant X-r...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
Supergiant fast-X-ray transients (SFXTs) are a sub-class of supergiant high-mass X-ray binaries host...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
© 2018 The Author(s). The low luminosity, X-ray flaring activity, of the sub-class of high-mass X-ra...
Timing analysis of the INTEGRAL-IBIS and Swift-BAT light curves of the supergiant fast X-ray transie...
Context. SAX J1818.6-1703 is a flaring transient X-ray source serendipitously discovered by BeppoSAX...
In the settling accretion theory, which is applicable to quasi-spherical accreting slowly rotat-ing ...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are char...
Supergiant Fast X-ray Transients (SFXT) are a class of HMXB that have only recently been unveiled by...
Supergiant fast X-ray transients (SFXTs) are X-ray binary systems with a supergiant companion and li...
Context. Supergiant fast X-ray (SFXT) transients are a peculiar class of supergiant X-ray binaries c...
In the last eight years the INTEGRAL satellite has allowed to discover a new class of transient X-ra...
Context.INTEGRAL, the European Space Agency's γ-ray observatory, tripled the number of super-giant h...
© ESO, 2017. Context. Supergiant fast X-ray (SFXT) transients are a peculiar class of supergiant X-r...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
Supergiant fast-X-ray transients (SFXTs) are a sub-class of supergiant high-mass X-ray binaries host...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are defi...
© 2018 The Author(s). The low luminosity, X-ray flaring activity, of the sub-class of high-mass X-ra...
Timing analysis of the INTEGRAL-IBIS and Swift-BAT light curves of the supergiant fast X-ray transie...
Context. SAX J1818.6-1703 is a flaring transient X-ray source serendipitously discovered by BeppoSAX...
In the settling accretion theory, which is applicable to quasi-spherical accreting slowly rotat-ing ...
Context. Supergiant fast X-ray transients (SFXTs) are high mass X-ray binaries (HMXBs) that are char...
Supergiant Fast X-ray Transients (SFXT) are a class of HMXB that have only recently been unveiled by...
Supergiant fast X-ray transients (SFXTs) are X-ray binary systems with a supergiant companion and li...