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2025 年 10 月 21 日 星期二 · 数据截至 arXiv / ADS 最新收录日
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Assessing the performance of future space-based detectors: Astrophysical foregrounds and individual sources

Perego, Alice, Bonetti, Matteo, Sesana, Alberto, et al.

原文摘要Abstract

The space mission LISA, scheduled for launch in 2035, aims to detect gravitational wave (GW) signals in the milli-Hz band. In the context of the ESA Voyage 2050 Call for new mission concepts, other frequency ranges are explored by the Gravitational-Wave Space 2050 Working Group to conceive new proposals for a post-LISA space-based detector. In this work, we give a preliminary estimate of the observational potential of three mission designs proposed in the literature, namely, <inline-formula><mml:math><mml:mrow><mml:mi>μ</mml:mi><mml:mi>Ares</mml:mi></mml:mrow></mml:math></inline-formula>, AMIGO and the Decihertz Observatory. The analysis framework includes astrophysical GW sources, such as massive black hole binaries and extreme mass-ratio inspirals, and compact binaries, such as stellar black holes and white dwarfs. For each detector, we first present a consistent computation of the unresolved gravitational wave background (GWB) produced by the sum of all anticipated astrophysical populations using an iterative subtraction algorithm. We then investigate which types of systems are the most appealing by measuring the number of GW signals detected and exploring the source properties.

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评估未来空间探测器的性能:天体物理前景与单个源 · 本文对三种未来空间引力波探测器(μAres、AMIGO和Decihertz Observatory)的观测潜力进行初步估计,计算了未解天体物理引力波背景并分析了可探测的源数量与性质。

预印本 2025-10-21 · 刊出 2026-07-15 · 收录 2026-07-27