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High-energy astrophysics and the search for sources of gravitational waves

机译:高能天体物理学和引力波源的寻找

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摘要

The dawn of the gravitational-wave (GW) era has sparked a greatly renewed interest into possible links between sources of high-energy radiation and GWs. The most luminous high-energy sources—gamma-ray bursts (GRBs)—have long been considered as very likely sources of GWs, particularly from short-duration GRBs, which are thought to originate from the merger of two compact objects such as binary neutron stars and a neutron star–black hole binary. In this paper, we discuss: (i) the high-energy emission from short-duration GRBs; (ii) what other sources of high-energy radiation may be observed from binary mergers; and (iii) how searches for high-energy electromagnetic counterparts to GW events are performed with current space facilities. While current high-energy facilities, such as Swift and Fermi, play a crucial role in the search for electromagnetic counterparts, new space missions will greatly enhance our capabilities for joint observations. We discuss why such facilities, which incorporate new technology that enables very wide-field X-ray imaging, are required if we are to truly exploit the multi-messenger era.This article is part of a discussion meeting issue ‘The promises of gravitational-wave astronomy’.
机译:引力波(GW)时代的来临引发了人们对高能辐射源与GWs之间可能存在的联系的极大兴趣。长期以来,最发光的高能源-伽马射线暴(GRB)-一直被认为是极有可能的GW的来源,尤其是短时间GRB,它们被认为是由两个紧凑物体(例如二元中子)的合并产生的恒星和中子星-黑洞双星。在本文中,我们讨论:(i)短期GRB产生的高能排放; (ii)从二元合并中可以观察到其他什么高能辐射源; (iii)如何利用当前的空间设施进行与GW事件有关的高能电磁对应物的搜索。尽管目前的高能设施,如斯威夫特(Swift)和费米(Fermi),在寻找电磁对等方面起着至关重要的作用,但新的太空飞行任务将大大增强我们的联合观测能力。我们要讨论的是,为什么我们要真正利用多信使时代,就需要使用这样的设施,这些设施需要能够实现宽视场X射线成像的新技术。本文是讨论会议“引力的承诺”的一部分波天文学”。

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