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2026 年 6 月 25 日 星期四 · 数据截至 arXiv / ADS 最新收录日
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01
优先级 70 · 快速射电暴 FRB

A search for fast radio bursts from globular clusters in M49 with FAST

利用FAST在M49球状星团中搜寻快速射电暴

Simon C.-C. Ho (Research School of Astronomy and Astrophysics, The Australian National University; Centre for Astrophysics and Supercomputing, Swinburne University of Technology; OzGrav: ARC Centre of Excellence for Gravitational Wave Discovery), C. Flynn (Centre for Astrophysics and Supercomputing, Swinburne University of Technology; OzGrav), M. Bailes (Centre for Astrophysics and Supercomputing, Swinburne University of Technology; OzGrav) et al.

原文摘要Abstract

The origins of fast radio bursts (FRBs) remain uncertain, although magnetars are a leading progenitor candidate. Because magnetars are thought to form primarily through core-collapse supernovae in young stellar populations, the discovery of FRB 20200120E in a globular cluster (GC) in the nearby galaxy M81 was unexpected given the ancient stellar populations of GCs. Expanding the sample of FRBs localized to nearby galaxies is therefore essential for testing FRB formation channels in old stellar environments. M49 (NGC 4472) is a nearby (<inline-formula><tex-math>$\approx 17$</tex-math></inline-formula> Mpc), radio-quiet giant elliptical galaxy in the Virgo cluster hosting an extensive GC system (<inline-formula><tex-math>$\approx 7000$</tex-math></inline-formula> GCs), making it an ideal target for GC FRB searches. We conducted a 9-h SnapShotCal observation of M49 using the Five-hundred-meter Aperture Spherical Telescope (FAST) 19-beam receiver, covering approximately 4230 GCs (<inline-formula><tex-math>$T_{\rm eff}={2.1}$</tex-math></inline-formula> h per GC), and performed a comprehensive single-pulse search with TRANSIENTX over a dispersion-measure range of 0─<inline-formula><tex-math>$5000\, \mathrm{pc\, cm^{-3}}$</tex-math></inline-formula>. No unambiguous astrophysical FRBs were detected. The most significant trigger reached a post-processed signal-to-noise ratio of <inline-formula><tex-math>$8.6\, \sigma$</tex-math></inline-formula> at a dispersion measure of <inline-formula><tex-math>$412.2\, \mathrm{pc\, cm^{-3}}$</tex-math></inline-formula>, but is statistically consistent with thermal noise after accounting for the false-alarm rate. Using the radiometer equation, we derive a beam-averaged peak flux-density sensitivity of <inline-formula><tex-math>$\approx 16.5$</tex-math></inline-formula> mJy (corresponding to a fluence limit of <inline-formula><tex-math>$\approx 16.5\, \mathrm{mJy\, ms}$</tex-math></inline-formula> for a 1 ms burst) and place an upper limit on the FRB occurrence rate of <inline-formula><tex-math>${4.7}\times 10^{-4}\, \mathrm{FRB\, GC^{-1}\, h^{-1}}$</tex-math></inline-formula>. Our non-detection implies that no bright bursts were observed above this fluence threshold during the observing window. The derived rate limit is therefore sensitivity-limited and applies only to bursts above <inline-formula><tex-math>$\approx 16.5\, \mathrm{mJy\, ms}$</tex-math></inline-formula> (for a 1 ms burst), constraining only the detectable (high-fluence) portion of the GC FRB population.

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AI 综述 AI-generated · 以原文为准
亮点

利用FAST高灵敏度首次对射电宁静星系M49的~4200个球状星团进行深度FRB搜寻, 得到16.5 mJy ms流量上限; 讨论了一个S/N=8.6的候选体, 其DM超出预期, 可能为背景FRB。

脉络与展望

快速射电暴FRB 20200120E在M81球状星团中的发现 Kirsten+ 2022 首次揭示年老星族中也能产生FRB, 挑战了磁星起源于核坍缩超新星的传统模型, 并提出如白矮星吸积坍缩或毫秒脉冲星巨脉冲等替代机制 Kremer+ 2023; Lu+ 2022; Ho+ 2025。基于FRB 20200120E的爆发率, Kremer+ 2023 预测对近邻星系GC系统进行约100小时观测有望探测到数个FRB, 但M87等射电强星系会降低灵敏度。本研究选取射电宁静星系M49, 利用FAST进行9小时快照观测, 覆盖约4230个球状星团, 未探测到明确FRB, 为GC中FRB的发生率设定了上限。未来通过更长时间监测或利用CHIME、MeerKAT等对更近星系如NGC 253的GC系统探测 Hurter+ 2024, 将更有效约束FRB在年老星族中的形成与演化。

预印本 2026-06-25 · 刊出 2026-06-27 · 收录 2026-07-22

边缘相关 2 篇 · 低相关性展开 +
优先级 25 · 黑洞吸积 · X射线变率 · 随机过程

Random walks around black holes and low-frequency X-ray variability

Arthur G. Suvorov

原文摘要Abstract

The stochastic dynamics of a grain embedded within a turbulent fluid subject to strong gravitational fields can be formulated as a random walk on a Riemannian manifold. Such curvature-weighted walks provide a framework to model the intrinsic variability of accretion onto compact objects. By solving the relevant Fokker-Planck equation on a black hole background, we find the counterintuitive result that the escape probability of a grain is actually higher compared to flat space. This is a consequence of the stretching of radial cells near the event horizon: there is a greater spatial volume for the particle to wander through before being captured. By simulating a large number of grain trajectories, initially distributed on concentric shells with a density profile set by the thin-disc structure equations, we also study particle fluxes through the horizon. Shallower spectral indices emerge at low frequencies relative to flat space, primarily due to time dilation, and steeper ones at high frequencies. We find that Schwarzschild-weighted spectra broadly match observations of low-frequency X-ray variability from systems like Cygnus X-1 in their hard state, suggesting that geometric drifts may be important in describing stochastic accretion processes.

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黑洞周围的随机游走与低频X射线变异性 · 通过建立黑洞背景湍流中颗粒的随机行走模型并求解福克-普朗克方程与模拟轨迹,发现逃逸概率高于平直空间且光谱与观测匹配,从而解释了低频X射线变异性

预印本 2026-07-16 · 接收 2026-06-25 · 刊出 2026-07-13 · 收录 2026-07-18

优先级 20

Hubble tension: a short review of theoretical explanations

Jia-Qi Wang, Zong-Kuan Guo

原文摘要Abstract

The $Λ$ cold dark matter model successfully describes a wide range of cosmological observations. However, the persistent discrepancy between the value of the Hubble constant inferred from cosmic microwave background measurements within this model and that obtained from local distance-ladder determinations points to a significant inconsistency. This short review examines theoretical responses across the cosmological inference chain, from the gravitational field equations to the pre-recombination sound horizon and the late-time distance-redshift relation. We focus primarily on modified gravity, and briefly discuss early- and late-time mechanisms that can alter the acoustic ruler, distance measures, structure growth, or gravitational response. Current proposals can reduce the nominal tension, but often at the cost of correlated shifts in cosmic microwave background spectra, standard-ruler distances, lensing, structure growth, or calibrator information. Further progress requires unified likelihoods and multiprobe tests linking all key observables under the same model assumptions.

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哈勃张力:理论解释的简短回顾 · 简短回顾哈勃张力理论解释,重点关注修正引力及早期/晚期机制,指出当前方案在降低张力时带来其他观测偏移,需统一多探针测试。

预印本 2026-07-23 · 接收 2026-06-25 · 刊出 2026-07-15 · 收录 2026-07-24