论文标题

将伽马射线偏光仪添加到Multi-Messgenger时代

Adding Gamma-ray Polarimetry to the Multi-Messenger Era

论文作者

Kole, Merlin, Iacovelli, Francesco, Mancarella, Michele, Produit, Nicolas

论文摘要

在过去的十年中,天体物理学中有两个新领域的出现:伽玛射线极化法和GW天文学。前者旨在测量从天体物理来源的10至100 keV能量范围内伽玛射线的极化,这使得第一个专用极化器(如GAP和Polar)的发射。另一方面,GW天文学始于2015年Ligo的第一次黑洞合并,随后是2017年的第一个多信使检测。尽管文献中已经详细讨论了这两个单独的领域的潜力,但迄今为止,关节观察的潜力被忽略了。在本文中,我们旨在定义GW观测如何最佳地有助于伽马射线偏振法,并研究关节分析的科学潜力。此外,我们旨在在不久的将来提供有关此类联合测量的可行性的预测。我们研究了哪些GW可观察物可以与伽马射线极化的测量结果结合使用,以提高有关GRB发射模型的区别能力。然后,我们为当前和未来的GW检测器和极化计的联合检测能力提供预测。我们的结果表明,通过将GW数据添加到极化法中,单个精确的关节检测将允许排除大多数发射模型。我们表明,在未来几年,GW和Gamma Ray Polarimeter之间的联合检测可能已经是可能的。尽管这些将允许限制模型空间的一部分,但在不久的将来,高度约束关节检测的可能性将仍然很小。但是,即使是单一的这样的测量,也很重要的是追求这样的努力。此外,我们表明,使用下一代GW探测器,例如爱因斯坦望远镜,GW数据可以更好地补充极化数据的联合检测。

The last decade has seen the emergence of two new fields within astrophysics: gamma ray polarimetry and GW astronomy. The former, which aims to measure the polarization of gamma rays in the energy range of 10s to 100s of keV, from astrophysical sources, saw the launch of the first dedicated polarimeters such as GAP and POLAR. On the other hand, GW astronomy started with the detection of the first black hole mergers by LIGO in 2015, followed by the first multi messenger detection in 2017. While the potential of the two individual fields has been discussed in detail in the literature, the potential for joint observations has thus far been ignored. In this article, we aim to define how GW observations can best contribute to gamma ray polarimetry and study the scientific potential of joint analyses. In addition we aim to provide predictions on feasibility of such joint measurements in the near future. We study which GW observables can be combined with measurements from gamma ray polarimetry to improve the discriminating power regarding GRB emission models. We then provide forecasts for the joint detection capabilities of current and future GW detectors and polarimeters. Our results show that by adding GW data to polarimetry, a single precise joint detection would allow to rule out the majority of emission models. We show that in the coming years joint detections between GW and gamma ray polarimeters might already be possible. Although these would allow to constrain part of the model space, the probability of highly constraining joint detections will remain small in the near future. However, the scientific merit held by even a single such measurement makes it important to pursue such an endeavour. Furthermore, we show that using the next generation of GW detectors, such as the Einstein Telescope, joint detections for which GW data can better complement the polarization data become possible.

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