Neutron Star Merger Afterglows: Population Prospects for the Gravitational Wave Era

Raphael Duque, R. Mochkovitch, F. Daigne
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Abstract

Following the historical observation of GW170817 and its electromagnetic follow-up, new neutron star merger afterglows are expected to be observed as counterparts to gravitational wave signals during the next science runs of the gravitational interferometer network. The diversity of the observed population of afterglows of these future events is subject to various factors, which are (i) intrinsic, such as the energy of the ejecta, (ii) environmental, such as the ambient medium density or (iii) observational, such as the viewing angle and distance of the source. Through prescribing a population of mergers and modelling their afterglows, we study the diversity of those events to be observed jointly in gravitational waves and electromagnetic bands. In the future, observables of detected events such as viewing angle, distance, afterglow peak flux or proper motion will form distributions which together with predictions from our study will provide insight on neutron star mergers and their environments.
中子星合并余辉:引力波时代的人口前景
继GW170817的历史观测及其电磁跟踪之后,在重力干涉仪网络的下一次科学运行中,预计将观测到新的中子星合并余辉,作为引力波信号的对应。观测到的这些未来事件余辉数量的多样性取决于各种因素,这些因素是:(i)内在的,如喷射物的能量;(ii)环境的,如周围介质的密度;(iii)观测的,如观测角度和源的距离。通过规定一群合并和模拟它们的余辉,我们研究了在引力波和电磁带中共同观测到的这些事件的多样性。未来,观测到的事件,如观测角度、距离、余辉峰值通量或固有运动将形成分布,与我们的研究预测一起,将提供对中子星合并及其环境的见解。
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