高能暂现源 · 每日文献综述

HIGH-ENERGY TRANSIENTS · DAILY LITERATURE REVIEW
2026 年 7 月 6 日 星期一 · 数据截至 arXiv / ADS 最新收录日
I.

今日头条

No Breaking · 无突发
今日无通过复核的重大进展

当日 7 篇核心与相关文献均为常规推进,核心 2 篇已按优先级列于下方。

II.

核心文献

2 篇
01
优先级 85 · X射线双星与吸积致密天体

Spectropolarimetric detection of baryonic mass loading in a transient relativistic jet: application to the black hole X-ray binary Swift J1727.8-1613

瞬态相对论喷流中重子质量负载的光谱偏振探测:对黑洞X射线双星 Swift J1727.8-1613 的应用

A. K. Hughes, R. P. Fender, G. R. Sivakoff et al.

原文摘要Abstract

Radio emission during X-ray binary outbursts is dominated by synchrotron radiation from relativistic jets, but is usually studied through total-intensity diagnostics such as flux density, spectra, variability, and proper motion. Radio spectropolarimetry provides a complementary probe of the magneto-ionic plasma through Faraday rotation and depolarisation. When the Faraday rotating material is local to the source, these effects can constrain the jet plasma composition and mass content, but this approach is rarely applied to transient jetted sources. We present MeerKAT L-band spectropolarimetry of the black hole X-ray binary Swift J1727 during its 2023 outburst, focusing on the brightest radio flaring interval, when relativistic jets were being launched intermittently. Using multiple spectropolarimetric techniques, we identify transient Faraday-complex structure coincident with the major radio flares. The close temporal association with the flaring activity, together with the stability of the foreground Faraday screen, favours an origin local to the jet rather than in the ISM or in a separate local screen external to the emitting plasma. Since internal Faraday rotation is suppressed in a pure electron-positron plasma, the data favour a dominant electron-proton component. Interpreting the characteristic Faraday thickness as internal rotation, and anchoring the magnetic-field and size scales with synchrotron self-absorption arguments, we infer a characteristic Faraday-rotating mass of order M<SUB>rot</SUB> ~ 10<SUP>21</SUP> g, corresponding to only a small fraction, f<SUB>rot</SUB> ~ 10<SUP>-3</SUP>, of the accreted mass available during the flare. These results show that time-domain spectropolarimetry can turn transient Faraday complexity into a diagnostic of jet composition, mass loading, and plasma evolution in X-ray binary outbursts, and potentially other transient jetted sources.

展开 ▾
AI 综述 AI-generated · 以原文为准
亮点

首次在时域上利用宽带光谱偏振技术揭示了黑洞 X 射线双星喷流中的法拉第复杂结构;由此直接推断喷流主要为电子-质子等离子体,并测定了旋转质量,为喷流组成和质量加载提供了新诊断工具。

脉络与展望

过去对 X 射线双星射电喷流的研究主要依赖总强度信息,而光谱偏振技术因能探测法拉第旋转和退偏振效应,可提供喷流磁化等离子体的关键约束。尽管该技术在活动星系核中已较成熟,但在时域爆发的 X 射线双星中鲜有应用。本研究将 MeerKAT L 波段光谱偏振观测应用于 Swift J1727 的 2023 年爆发,在射电耀斑期间识别出与耀斑活动密切相关的瞬态法拉第厚结构,证明其源于喷流内部而非星际介质。这一发现不仅直接表明喷流中存在重子物质(电子-质子成分),还通过法拉第厚度结合同步自吸收模型估算了旋转质量,仅占可用吸积质量的一小部分。未来,随着宽带偏振观测能力的提升及与 VLBI 等高分辨率技术的结合,此类时域光谱偏振方法有望推广至其他爆发源,系统性揭示喷流的物质组成、质量加载及演化过程。

预印本 2026-07-06 · 刊出 2026-07-08 · 收录 2026-07-22

02
优先级 80 · 伽马暴 GRB · 由暂现源样本驱动的总体统计、宇宙学与基础物理应用

Gamma-Ray Bursts Reveal the History and Faint Contributors of Cosmic Reionization

伽马射线暴揭示宇宙再电离的历史与暗弱贡献者

Jing-Meng Hao, Paolo Cassata, Zhen-Ya Zheng et al.

原文摘要Abstract

Star-forming galaxies are generally believed to be the main drivers of cosmic reionization. However, the relative contributions of bright and faint galaxies to this process remain unclear. As the most luminous transient phenomena in the universe, long gamma-ray bursts (LGRBs) provide a unique opportunity to probe star formation occurring in both detectable and undetectable galaxies. In this Letter, we present new estimates of the cosmic star formation rate density (SFRD) at 4 &lt; z &lt; 10 using Swift LGRBs detected over the past two decades, by considering LGRBs as unbiased tracers of total star formation at high redshifts. Crucially, we find that the new LGRB-inferred SFRD can naturally explain current measurements of hydrogen reionization without invoking extreme ionizing photon production efficiencies or escape fractions from galaxies. Using these LGRB-inferred SFRD values, we further investigate the faintest magnitude limits of high-redshift galaxies, finding a redshift evolution of the limiting magnitudes from <inline-formula> <mml:math><mml:msub><mml:mrow><mml:mi>M</mml:mi></mml:mrow><mml:mrow><mml:mi>lim</mml:mi></mml:mrow></mml:msub><mml:mo>∼</mml:mo><mml:mo>−</mml:mo><mml:mn>14</mml:mn></mml:math> </inline-formula> to −15 at z ∼ 6, to <inline-formula> <mml:math><mml:msub><mml:mrow><mml:mi>M</mml:mi></mml:mrow><mml:mrow><mml:mi>lim</mml:mi></mml:mrow></mml:msub><mml:mo>∼</mml:mo><mml:mo>−</mml:mo><mml:mn>10</mml:mn></mml:math> </inline-formula> to −11 at z ∼ 10. This result provides one independent piece of evidence for the presence of a large population of faint galaxies at redshifts z ≳ 6, as an important complement to our understanding of the ionizing photon budget in the early universe.

展开 ▾
AI 综述 AI-generated · 以原文为准
亮点

亮点:以长伽马暴为无偏恒星形成示踪,克服了传统星系观测缺失暗端的问题,为再电离光子预算提供了自洽解释;首次从伽马暴角度给出高红移星系极限星等的红移演化证据。

脉络与展望

宇宙再电离通常被认为由恒星形成星系驱动,但对暗弱星系贡献的约束主要依赖于紫外光度函数的外推,存在较大不确定性。长伽马暴作为大质量恒星死亡的直接信号,其光度极高,能够追踪所有恒星形成活动,包括那些超出当前望远镜探测极限的暗弱星系。本文利用Swift探测到的长伽马暴样本,推导出z~4-10的恒星形成率密度,发现无需假设极端的逃逸分数或电离效率即可与再电离观测吻合,从而为暗弱星系主导再电离提供了独立支持。未来,结合JWST等深度成像对高红移暗弱星系的直接普查,可望进一步厘清伽马暴示踪的准确性,并精细刻画再电离时期的光子来源。

接收 2026-07-06 · 刊出 2026-07-21 · 收录 2026-07-28

边缘相关 1 篇 · 低相关性展开 +
优先级 10

Correction: Doppler pulling suppression in arm locking systems for space-based gravitational wave detection

Zhang, Yi, Shen, Yulin, Yang, Jie, et al.

原文摘要Abstract

展开 ▾

更正:空间引力波探测中臂锁定系统的多普勒拉动抑制 · 对空间引力波探测中臂锁定系统多普勒拉动抑制的相关内容进行了更正。

刊出 2026-07-06 · 收录 2026-07-28