从随机背景约束双中子星的透镜效应

R. Buscicchio, C. Moore, G. Pratten, P. Schmidt, A. Vecchio
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引用次数: 1

摘要

从理论上讲,双中子星(BNS)凝聚产生的引力波(GW)瞬态可以受到引力透镜的影响,从而增加了振幅和信噪比。我们估计了LIGO和Virgo可分辨透镜BNS事件的速率,并发现它受到当前未检测到随机GW背景的限制。紧随着我们之前在双黑洞透镜背景下开发的形式主义(arXiv:2006.04516v2[此http URL]),我们表明,在当前的灵敏度下,透镜放大的BNS合并的比例$\mu> 1.02$小于$\sim 7\times 10^{-8}$,因此在不久的将来不应该期望这样的事件。我们还对预测的未来敏感性进行预测。
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Constraining the lensing of binary neutron stars from their stochastic background
Gravitational wave (GW) transients from binary neutron star (BNS) coalescences can, in principle, be subject to gravitational lensing thereby increasing the amplitude and signal-to-noise ratio. We estimate the rate of lensed BNS events resolvable by LIGO and Virgo and find that it is constrained by the current non-detection of a stochastic GW background. Following closely the formalism we developed previously (arXiv:2006.04516v2 [this http URL]) in the context of binary black hole lensing, we show that at current sensitivities the fraction of BNS coalescences with lensing magnifications $\mu> 1.02$ is less than $\sim 7\times 10^{-8}$ and therefore such events should not be expected in the near future. We also make predictions for projected future sensitivities.
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