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2026 年 5 月 30 日 星期六 · 数据截至 arXiv / ADS 最新收录日

本页经 2 次补录 · ·

I.

今日头条

No Breaking · 无突发
今日无通过复核的重大进展

当日 2 篇核心与相关文献均为常规推进,核心 1 篇已按优先级列于下方。

II.

核心文献

1 篇
0108-20 补录
优先级 85 · X 射线双星与吸积致密天体 · 黑洞/中子星吸积 · QPO · X 射线定时与能谱

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

Sanjit Debnath, Indranil Chattopadhyay, Soumyadip Mandal et al.

原文摘要Abstract

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.

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AI 综述 AI-generated · 以原文为准
亮点

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。

脉络与展望

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

边缘相关 1 篇 · 低相关性展开 +
优先级 1007-28 补录

Slow-down of expanding bubbles in the early Universe

Bhusal, Nabeen, Blasi, Simone, Konstandin, Thomas, et al.

原文摘要Abstract

We study slow-down effects for bubbles formed in a cosmological first-order phase transition (PT) focusing on deflagrations and hybrids, where the bubble wall is preceded by a shockwave of heated plasma. Slow-down has been observed in multi-bubble simulations together with a suppression of gravitational wave (GW) emission, mostly for slow walls. We study the impact of the shock waves on the wall velocity around percolation, by considering steady-state single-bubble solutions and incorporating the possible heating effects by two different mechanisms. First, we investigate the slow-down experienced by a bubble expanding into an impeding shockwave, where the temperature is higher than at nucleation, and the fluid is no longer at rest. Taking into account such heating and kinematic effects, we find that the most significant slow-down occurs for the fastest walls, and thus cannot explain the suppression of the GWs observed in the simulations. However, these effects are stronger for PTs with a sizeable change in degrees of freedom unlike what is usually implemented in simulations, suggesting that the degrees of freedom can be an important additional parameter for characterizing the GW spectrum. For the second slow-down mechanism, we study heated droplets of false vacuum that shrink towards the end of the PT. By implementing a suitable boundary condition motivated by energy conservation, we show how the droplet velocity, interpreted here as the late-time velocity of the bubble walls, can be predicted from the properties of the initial deflagration/hybrid, in remarkable agreement with numerical simulations. Droplets are found to shrink more slowly for stronger PTs and slower deflagrations, with a mild dependence on the change of degrees of freedom. Such slow droplets naturally correlate with a suppression of GWs, while geometrical properties such as the shock width play an important role as well.

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早期宇宙中膨胀气泡的减速 · 本文研究宇宙一级相变中气泡减速效应,发现冲击波加热对最快墙壁影响最大但不能解释引力波抑制,而假真空液滴收缩速度较慢且与强相变和慢爆燃相关,可导致引力波抑制。

接收 2026-05-30 · 刊出 2026-07-20 · 收录 2026-07-28