论文标题

GRB 221009a的高能排放的可观察性

Observability of the very-high-energy emission from GRB 221009A

论文作者

Galanti, Giorgio, Nava, Lara, Roncadelli, Marco, Tavecchio, Fabrizio, Bonnoli, Giacomo

论文摘要

The LHAASO Collaboration detected the gamma ray burst GRB 221009A at energies above $500 \, {\rm GeV}$ with a tail extending up to $18 \, \rm TeV$, whose spectral analysis has presently been performed up to $7 \, \rm TeV$ for the lower energy instrument LHAASO-WCDA only, with no indication of a cutoff.此后不久,Baksan Neutminino天文台的地毯2报道了对空气淋浴的观察,与同一GRB的能量$ 251 \,{\ rm Tev} $引起的空气淋浴一致。鉴于源红移$ z = 0.151 $,由于外层次背景灯而引起的预期衰减非常严重,因此这些检测很难解释。在这封信中,我们表明,具有质量$ $ m_a \ simeq(10^{ - 11} -11} -10^{ - 7})\,{\ rm ev} $和两光量的$ g_ g_ g_ {Aγγγ} \ simeq(3-5){3-5){3-5){3-5){3-5){ - \ simeq(10^{ - 11} -10^{ - 7} \ simeq(3-5){3-5){3-5){ - \ simeq(3-5){3-5){3-5){3-5){\ simeq(10^{ - 11} -10} \ simeq(10^{ - 11} -10^{ - 7})的存在了。 gev}^{ - 1} $强烈降低了TEV光子的光学深度,从而解释了观测值。我们的阿尔卑斯山符合所有可用的约束,与以前的两个提示相一致,并且是对冷暗物质的良好候选者。此外,我们表明洛伦兹违规行为(LIV)可以解释地毯2的结果,但不能解释Lhaaso的观察结果。

The LHAASO Collaboration detected the gamma ray burst GRB 221009A at energies above $500 \, {\rm GeV}$ with a tail extending up to $18 \, \rm TeV$, whose spectral analysis has presently been performed up to $7 \, \rm TeV$ for the lower energy instrument LHAASO-WCDA only, with no indication of a cutoff. Soon thereafter, Carpet-2 at Baksan Neutrino Observatory reported the observation of an air shower consistent with being caused by a photon of energy $251 \, {\rm TeV}$ from the same GRB. Given the source redshift $z=0.151$, the expected attenuation due to the extragalactic background light is very severe so that these detections have proven very hard to explain. In this Letter, we show that the existence of axion-like-particles (ALPs) with mass $m_a \simeq (10^{-11}-10^{-7}) \, {\rm eV}$ and two-photon coupling $g_{a γγ} \simeq (3-5) \times 10^{-12} \, {\rm GeV}^{- 1}$ strongly reduce the optical depth of TeV photons, thus explaining the observations. Our ALPs meet all available constraints, are consistent with two previous hints at their existence and are good candidates for cold dark matter. Moreover, we show that Lorentz Invariance Violation (LIV) can explain the Carpet-2 result but not the LHAASO observations.

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