高能暂现源 · 每日文献综述

HIGH-ENERGY TRANSIENTS · DAILY LITERATURE REVIEW
2025 年 11 月 19 日 星期三 · 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
01
优先级 70 · 伽马暴 GRB · 基础物理应用

Is there new physics beyond 30 TeV in the BOAT?

BOAT 中 30 TeV 以上是否存在新物理?

F. Rescic (University of Rijeka), L. Recabarren Vergara (Universidad de Zaragoza), M. Doro (University of Padova) et al.

原文摘要Abstract

The exceptionally bright gamma-ray burst GRB 221009A, detected up to multi-TeV energies by the LHAASO observatory, provides a unique opportunity to probe possible deviations from standard photon propagation at extreme energies. In particular, it allows to test quadratic subluminal Lorentz Invariance Violation (LIV) scenarios through a potential enhancement of the observed flux at the highest energies. We argue that excesses in the GRB 221009A data currently classified as non-detections at energies E ≳ 30 TeV warrant further investigation, as they may indicate a recovery of the observable spectrum consistent with the LIV-induced suppression of <mml:math><mml:mrow><mml:mi>γ</mml:mi><mml:mi>γ</mml:mi><mml:mo>→</mml:mo><mml:msup><mml:mi>e</mml:mi><mml:mo>−</mml:mo></mml:msup><mml:msup><mml:mi>e</mml:mi><mml:mo>+</mml:mo></mml:msup></mml:mrow></mml:math> interactions during propagation. The absence of such a signature would allow one to exclude previously unexplored regions of the parameter space associated with the energy scale of new physics.

展开 ▾
AI 综述 AI-generated · 以原文为准
亮点

首次采用精确的 LIV 修正 γ-γ 截面分析 GRB 221009A 极高能谱,指出 >30 TeV 的非探测结果可能隐藏 LIV 导致的通量恢复信号,并建立了恢复峰能 E* 与 LIV 能标 Λ 的经验关系 E* ∝ Λ^{2/3}。

脉络与展望

甚高能伽马暴 GRB 221009A 凭借其极端亮度与持续 TeV 辐射成为检验新物理的理想对象。此前对该暴的洛伦兹不变性破坏(LIV)研究多聚焦于线性或时间延迟约束 Piran & Ofengeim 2024,而对二次亚光速情景的吸收异常探索不足。本文采用 Carmona+ 2024 最新导出的精确 γ-γ 截面,结合 LHAASO 观测数据 Cao+ 2023a,系统预言了 >30 TeV 能区的通量恢复特征,并指出该能量窗口的“非探测”可能已隐含 LIV 信号。未来,宽视场探测器 SWGO Abreu+ 2025 与下一代切伦科夫望远镜阵列 CTAO Acharya+ 2018 将大幅提升瞬变源捕捉能力与高能灵敏度,配合日益精进的背景光模型 Saldana-Lopez+ 2021,有望将二次亚光速 LIV 能标的检验推进到前所未有的高度。

预印本 2025-11-19 · 刊出 2026-07-01 · 收录 2026-07-22

边缘相关 1 篇 · 低相关性展开 +
优先级 507-31 补录

Accretion Burst Crystallizes Silicates in a Planet-Forming Disk

Jeong-Eun Lee, Chul-Hwan Kim, Jaeyeong Kim, et al.

原文摘要Abstract

Crystalline silicates form at high temperatures (> 900 K; Fabian et al. 2000; Hallenbeck et al. 1998). Their presence in comets (Hanner et al. 1994; Hayward et al. 2000; Wooden et al. 2002; Shinnaka et al. 2018) suggests that high-temperature dust processing occurred in the early Solar System and was subsequently transported outward to comet-forming regions. However, direct evidence for this crystallization and redistribution in Sun-like protostars has remained elusive. By comparing James Webb Space Telescope (JWST) mid-infrared spectra of the periodically bursting protostar EC 53 (Lee et al. 2020), we detect crystalline silicate (forsterite and enstatite) emission features that appear only during the burst. The emergence of these features indicates active crystal formation via thermal annealing in the hot inner disk during the accretion burst. We also detect a nested outflow-a collimated atomic jet enclosed by slower molecular outflows, consistent with magnetohydrodynamic (MHD) wind models (Pascucci et al. 2025). This configuration provides a mechanism for outward transport of freshly crystallized silicates (Giacalone et al. 2019). Our results provide the first direct observational evidence of in-situ silicate crystallization during episodic accretion bursts in a very young star still embedded in its dense envelope. Although we do not directly detect grains transported to the outer disk, the observed trends are consistent with outward redistribution, indicating that both dust processing and transport occur during the earliest and most dynamic stages of star formation.

展开 ▾

吸积爆发在行星形成盘中将硅酸盐结晶化 · 通过JWST观测,发现爆发原恒星EC 53在吸积爆发期间出现结晶硅酸盐特征,首次直接证明硅酸盐在早期恒星形成阶段原位结晶并可能向外输运。

预印本 2026-07-30 · 接收 2025-11-19 · 刊出 2026-01-21 · 收录 2026-07-31