Comparing the Accretion Disk Evolution of Black Hole and Neutron Star X-ray Binaries from Low to Super-Eddington Luminosity
arXiv:1107.5171 · doi:10.1088/0004-637X/739/1/42
Abstract
Low-mass X-ray binaries (LMXBs) are systems in which a low-mass companion transfers mass via Roche-lobe overflow onto a black hole (BH) or a weakly magnetized neutron star (NS). It is believed that both the solid surface and the magnetic field of an NS can affect the accretion flow and show some observable effects. Using the disk emission dominant data, we compare the disk evolution of the two types of systems from low luminosity to super-Eddington luminosity. As the luminosity decreases the disk in the NS LMXB 4U1608--522 begins to leave the innermost stable circular orbit (ISCO) at much higher luminosity ( 0.1 ), compared with BH LMXBs at much lower luminosity ( 0.03 ), due to the interaction between the NS magnetosphere and accretion flow. However, as the luminosity increases above a critical luminosity, the disks in BH and NS LMXBs trace the same evolutionary pattern, because the magnetosphere is restricted inside ISCO, and then both the NS surface emission and (dipole) magnetic field do not significantly affect the secular evolution of the accretion disk, that is driven by the increased radiation pressure in the inner region. We further suggest that the NS surface emission provides additional information of accretion disk, not available in BH systems. Through the observed NS surface emission, we argue that the disk thickness is less than , and that the significant outflow from inner disk edge exists at luminosity close to Eddington luminosity.
17 pages, 5 figures, 1 table, accepted for publication in ApJ
References in corpus (8)
- Modelling the behaviour of accretion flows in X-ray binaries
- Advection-Dominated Accretion and the Black Hole Event Horizon
- The Constant Inner-Disk Radius of LMC X-3: A Basis for Measuring Black Hole Spin
- Evaluating Spectral Models and the X-ray States of Neutron-Star X-ray Transients
- X-ray irradiation in XTE J1817-330 and the inner radius of the truncated disc in the hard state
- Disk Dominated States of 4U 1957+11: Chandra, XMM, and RXTE Observations of Ostensibly the Most Rapidly Spinning Galactic Black Hole
- The effect of coronal radiation on a residual inner disk in the low/hard spectral state of black hole X-ray binary systems
- XMM-Newton and INTEGRAL observations of the black hole candidate XTE J1817-330
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