论文标题

具有16%伽马射线辐射效率的宇宙火球

A Cosmological Fireball with Sixteen-Percent Gamma-Ray Radiative Efficiency

论文作者

Li, Liang, Wang, Yu, Ryde, Felix, Pe'er, Asaf, Zhang, Bing, Guiriec, Sylvain, Castro-Tirado, Alberto J., Kann, D. Alexander, Axelsson, Magnus, Page, Kim, Veres, Peter, Bhat, P. N.

论文摘要

伽马射线爆发(GRB)是宇宙中最强大的爆炸。射流如何将其能量转换为辐射是一个长期存在的问题,并且受到了很大的约束。标准模型将带有明亮的光球发射组件的相对论火球。对GRB辐射组件的明确诊断和GRB辐射效率的测量需要迅速排放和余波数据,并具有高分辨率和宽带覆盖的时间和能量。在这里,我们报告了TEV发射Bright Grb 190114c的全面时间和光谱分析。它的通量是迄今为止检测到的所有GRB中最高的之一,这使我们能够对及时发射频谱特性进行高分辨率研究,并将其时间演变降低到大约0.1 s的时间表。我们观察到,每个初始脉冲都有一个热成分,贡献了总能量的$ \ sim20 \%$,在损坏的幂律形状后,光球的相应温度和推断的洛伦兹因子进化了。从观察到非热光谱和光曲线,以$ \ sim 6 $ 〜s的形式将与火球减速相对应的余辉开始。通过纳入热观测和非热观测,以及光球和同步加速器辐射机制,我们可以直接推导火球能量预算,几乎没有对假设参数的依赖,并测量了该GRB的$ \ sim 16 \%$辐射效率。通过得出火球能量预算,余辉微物理学参数也可以直接从数据中限制。

Gamma-ray bursts (GRBs) are the most powerful explosions in the universe. How efficiently the jet converts its energy to radiation is a long-standing problem and it is poorly constrained. The standard model invokes a relativistic fireball with a bright photosphere emission component. A definitive diagnosis of GRB radiation components and measurement of GRB radiative efficiency require prompt emission and afterglow data with high-resolution and wide-band coverage in time and energy. Here we report a comprehensive temporal and spectral analysis of the TeV-emitting bright GRB 190114C. Its fluence is one of the highest of all GRBs detected so far, which allows us to perform a high-resolution study of the prompt emission spectral properties and their temporal evolution down to a timescale of about 0.1 s. We observe that each of the initial pulses has a thermal component contributing $\sim20\%$ of the total energy, the corresponding temperature and the inferred Lorentz factor of the photosphere evolve following broken power-law shapes. From the observation of the non-thermal spectra and the light curve, the onset of afterglow corresponding to the deceleration of the fireball is considered at $\sim 6$~s. By incorporating the thermal and the non-thermal observations, as well as the photosphere and the synchrotron radiative mechanisms, we can directly derive the fireball energy budget with little dependence on hypothetical parameters and to measure a $\sim 16\%$ radiative efficiency for this GRB. With the fireball energy budget derived, the afterglow microphysics parameters can also be constrained directly from the data.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源