论文标题

重力波的恒星质量微覆质。

Stellar-mass microlensing of gravitational waves

论文作者

Cheung, Mark H. Y., Gais, Joseph, Hannuksela, Otto A., Li, Tjonnie G. F.

论文摘要

当引力波穿过银河透镜的核恒星簇时,它们可能会被恒星微覆盖。由于波形叠加并放大了信号,这种微透镜可能会在波形上引起潜在的可观察到的跳动模式。一方面,跳动模式和放大倍率可能导致首次检测微得到的重力波。另一方面,微透镜在强镜头用例(例如定位和宇宙学研究)中引入了系统的误差。我们表明,当我们考虑由具有质量$ \ sillesim 100 \,\ rm m_ \ odot $的对象镜头的Ligo频带中的GWS时,衍射效果很重要。我们还表明,托管微透镜的星系在质量上改变了镜头构型,因此当涉及强镜头时,我们不能将微透镜视为隔离点质量镜头。我们发现,对于具有质量$ \ sim 1 \,\ rm m_ \ odot $的恒星镜头,衍射效应显着抑制了微透镜的放大倍率。因此,我们的结果表明,典型的星系或星系簇透镜镜头镜头的重力波可能会提供一个相对干净的环境来研究透镜系统,而不会受到恒星透镜的污染。我们讨论对强镜科学案例的潜在影响。更复杂的微透镜配置将需要进一步研究。

When gravitational waves pass through the nuclear star clusters of galactic lenses, they may be microlensed by the stars. Such microlensing can cause potentially observable beating patterns on the waveform due to waveform superposition and magnify the signal. On the one hand, the beating patterns and magnification could lead to the first detection of a microlensed gravitational wave. On the other hand, microlensing introduces a systematic error in strong lensing use-cases, such as localization and cosmography studies. We show that diffraction effects are important when we consider GWs in the LIGO frequency band lensed by objects with masses $\lesssim 100 \, \rm M_\odot$. We also show that the galaxy hosting the microlenses changes the lensing configuration qualitatively, so we cannot treat the microlenses as isolated point mass lenses when strong lensing is involved. We find that for stellar lenses with masses $\sim 1 \, \rm M_\odot$, diffraction effects significantly suppress the microlensing magnification. Thus, our results suggest that gravitational waves lensed by typical galaxy or galaxy cluster lenses may offer a relatively clean environment to study the lens system, free of contamination by stellar lenses. We discuss potential implications for the strong lensing science case. More complicated microlensing configurations will require further study.

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