中文

GRBAlpha测得的GRB 221009A峰值流量

高能天体物理现象 2023-08-30 v4

摘要

有史以来观测到的最亮伽马射线暴、长时标 GRB 221009A 被纳米卫星 GRBAlpha 在未饱和状态下探测到。我们给出了 80 keV 至 950 keV 共 13 个能段的瞬时辐射光变曲线,并进行了谱分析以计算峰值流量与峰值各向同性等效光度。由于该伽马射线暴时刻卫星的姿态信息不可用,我们探测了超过 200 个入射方向,以求得中位光度及其系统不确定性。我们发现,8080080-800 keV 范围(观测者参考系)内的峰值流量为 Fphp=1300200+1200F_{\rm{ph}}^{\rm{p}}=1300_{-200}^{+1200} ph cm2^{-2}s1^{-1}Fergp=5.70.7+3.7×104F_{\rm{erg}}^{\rm{p}}=5.7_{-0.7}^{+3.7}\times10^{-4} erg cm2^{-2}s1^{-1},而 GRBAlpha 可观测到的持续 300 s 的第一段伽马射线暴在同一能段的累积流量为 S=2.20.3+1.4×102S=2.2_{-0.3}^{+1.4}\times10^{-2} erg cm2^{-2} 或外推至 0.98,6900.9-8,690 keV 范围的 Sbol=4.90.5+0.8×102S^{\rm{bol}}=4.9_{-0.5}^{+0.8}\times10^{-2} erg cm2^{-2}。我们推断第一段伽马射线暴在 110,0001-10,000 keV 能段(红移 z=0.15z=0.15 处的静止参考系)释放的各向同性等效能量为 Eisobol=2.80.5+0.8×1054E_{\rm{iso}}^{\rm{bol}}=2.8_{-0.5}^{+0.8}\times10^{54} erg。在 9292092-920 keV 范围(静止参考系)的峰值各向同性等效光度为 Lisop=3.70.5+2.5×1052L_{\rm{iso}}^{\rm{p}}=3.7_{-0.5}^{+2.5}\times10^{52} erg s1^{-1},而在 110,0001-10,000 keV 范围(静止参考系)的玻色峰值各向同性等效光度为 Lisop,bol=8.41.5+2.5×1052L_{\rm{iso}}^{\rm{p,bol}}=8.4_{-1.5}^{+2.5}\times10^{52} erg s1^{-1}(4 s 时间尺度)。峰值发射能量为 Ep=Ep(1+z)=1120±470E_p^\ast=E_p(1+z)=1120\pm470 keV。我们对 Lisop,bolL_{\rm{iso}}^{\rm{p,bol}} 的测量结果与 Yonetoku 关系一致。由于该伽马射线暴的谱演化以及 GRBAlpha 在峰值时刻的取向,真实的峰值流量、累积流量、LisoL_{\rm{iso}}EisoE_{\rm{iso}} 可能更高。[删节]

关键词

引用

@article{arxiv.2302.10047,
  title  = {The peak-flux of GRB 221009A measured with GRBAlpha},
  author = {Jakub Ripa and Hiromitsu Takahashi and Yasushi Fukazawa and Norbert Werner and Filip Munz and Andras Pal and Masanori Ohno and Marianna Dafcikova and Laszlo Meszaros and Balazs Csak and Nikola Husarikova and Martin Kolar and Gabor Galgoczi and Jean-Paul Breuer and Filip Hroch and Jan Hudec and Jakub Kapus and Marcel Frajt and Maksim Rezenov and Robert Laszlo and Martin Koleda and Miroslav Smelko and Peter Hanak and Pavol Lipovsky and Tomas Urbanec and Miroslav Kasal and Ales Povalac and Yuusuke Uchida and Helen Poon and Hiroto Matake and Kazuhiro Nakazawa and Nagomi Uchida and Tamas Bozoki and Gergely Dalya and Teruaki Enoto and Zsolt Frei and Gergely Friss and Yuto Ichinohe and Kornel Kapas and Laszlo L. Kiss and Tsunefumi Mizuno and Hirokazu Odaka and Janos Takatsy and Martin Topinka and Kento Torigoe},
  journal= {arXiv preprint arXiv:2302.10047},
  year   = {2023}
}

备注

7 pages, 7 figures, 1 table, accepted for publication in Astronomy & Astrophysics