论文标题

长伽玛射线爆发飞机的传播引力波

Gravitational Waves from the Propagation of Long Gamma-Ray Burst jets

论文作者

Urrutia, Gerardo, De Colle, Fabio, Moreno, Claudia, Zanolin, Michele

论文摘要

在超忠实射流的传播过程中产生伽马射线爆发(GRB)。由于培养基的高度不透明度,研究靠近中心源的喷气机是一项挑战。在本文中,我们介绍了相对论喷气机的数值模拟,这些射流通过与长GRB相关的巨大的,剥离的包膜恒星传播,从恒星中脱离并加速进入情节介质。我们计算由射流通过恒星和偶尔介质传播产生的重力波(GW)信号。我们表明,射流传播的关键参数可以由GW信号直接确定。该信号提出了与射流持续时间相对应的第一个峰和第二个峰,该峰对应于位于射流轴(又取决于恒星尺寸)的观察者的突破时间,或者与离轴观察者的更大时间(对应于加速度阶段的末端)。我们还表明,在第一个峰之前和周围,GW信号的斜率跟踪了射流光度历史记录和祖细胞之星的结构。 GW信号的幅度为$ H_+D \ sim $数百万至数千厘米。尽管对于外乳外源,该信号超出了当前GW检测器的可检测性范围,但可以通过将来的仪器作为BBO,Decigo和Alia检测到它。我们的结果表明,与GRB喷气机相关的GW的未来检测可能代表了我们对这一现象的理解。

Gamma-ray bursts (GRBs) are produced during the propagation of ultra-relativistic jets. It is challenging to study the jet close to the central source, due to the high opacity of the medium. In this paper, we present numerical simulations of relativistic jets propagating through a massive, stripped envelope star associated to long GRBs, breaking out of the star and accelerating into the circumstellar medium. We compute the gravitational wave (GW) signal resulting from the propagation of the jet through the star and the circumstellar medium. We show that key parameters of the jet propagation can be directly determined by the GW signal. The signal presents a first peak corresponding to the jet duration and a second peak which corresponds to the break-out time for an observer located close to the jet axis (which in turn depends on the stellar size), or to much larger times (corresponding to the end of the acceleration phase) for off-axis observers. We also show that the slope of the GW signal before and around the first peak tracks the jet luminosity history and the structure of the progenitor star. The amplitude of the GW signal is $h_+D \sim$ hundreds to several thousands cm. Although this signal, for extragalactic sources, is outside the range of detectability of current GW detectors, it can be detected by future instruments as BBO, DECIGO and ALIA. Our results illustrate that future detections of GW associated to GRB jets may represent a revolution in our understanding of this phenomenon.

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