QPOs from the viscous transonic accretion flow around a spinning black hole
自旋黑洞粘性跨声速吸积流中的准周期振荡
We investigate the dynamics of transonic advective accretion flows around spinning black holes in the presence of viscosity. The spacetime of a Kerr black hole is approximated using a pseudo-potential. We study viscously driven shock oscillations over a range of black hole spin parameters. Our results show that the frequency range of quasi-periodic oscillations (QPOs) obtained from the power density spectra depends strongly on the black hole spin. Low-spin systems predominantly exhibit low-frequency QPOs, whereas rapidly rotating black holes ( ≳ 0.9) produce QPOs spanning a broad range from low to high frequencies, comparable to those observed in black hole X-ray binaries. We further obtain a correlation between the QPO frequency and the power-law photon index (Γ-ν<SUB>QPO</SUB>) by computing the spectrum for a 10M<SUB>⊙</SUB> black hole.
展开 ▾用伪势近似系统扫描黑洞自旋参数,揭示低自旋主要产生低频QPO、高自旋产生与黑洞X射线双星观测相符的宽频QPO;进一步给出Γ-ν_QPO关联,为利用QPO和能谱联合限制自旋提供参考。
过去对黑洞X射线双星QPO的研究多与吸积流振荡和谱态相联系,但对黑洞自旋如何调制QPO频率范围尚缺乏系统数值约束。本文在粘性跨声速吸积流框架下,用伪势近似Kerr时空,给出自旋依赖的QPO频率分布,把低自旋与低频率、高自旋与宽频段对应起来。这一结果将QPO频率范围与黑洞自旋及谱指数Γ联系起来,为利用QPO和能谱联合限制黑洞自旋提供了数值依据。后续可进一步耦合更真实的辐射转移与广义相对论磁流体力学模拟,检验伪势近似在近视界区域的偏差,并扩展到不同吸积率和倾角情形。
刊出 2026-05-30 · 收录 2026-08-20