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引力波探测器中多层镀膜反射镜引起的光散射计算方法。

Calculation method for light scattering caused by multilayer coated mirrors in gravitational wave detectors.

作者信息

Zeidler Simon, Akutsu Tomotada, Torii Yasuo, Hirose Eiichi, Aso Yoichi, Flaminio Raffaele

出版信息

Opt Express. 2017 Mar 6;25(5):4741-4760. doi: 10.1364/OE.25.004741.

Abstract

Scattered light in inteferometric gravitational wave detectors needs to be reduced so that it will not harm the actual signals coming from a gravitational wave. In this paper, we report on the application of the theory of light scattering from mirrors in interferometric detectors having multilayer coatings on their surfaces and compared the results with single-surface scattering theories, which are traditionally used in the field of gravitational wave detectors. For the first time in this field, we have calculated the scattering distributions of the power-recycling, the signal-recycling, and the beam-splitter mirrors in KAGRA (a cryogenic interferometric gravitational wave detector currently under construction in the Kamioka mine in Japan) by using models of their multilayer coatings. Furthermore, we have performed simulations to show the differences between multilayer scattering and single-surface scattering models in the back-scattering of mechanical structures close to the mirrors and the impact on the sensitivity of the KAGRA detector. We show that the back-scattering by using those coatings can be larger by up to almost two orders of magnitude and they also give rise to additional scattering features that should be taken into account for all optical applications in gravitational wave detectors.

摘要

干涉式引力波探测器中的散射光需要被减弱,以免其对来自引力波的实际信号造成损害。在本文中,我们报告了镜面光散射理论在表面具有多层涂层的干涉式探测器中的应用,并将结果与引力波探测器领域传统使用的单表面散射理论进行了比较。在该领域,我们首次通过使用功率循环镜、信号循环镜和分束镜的多层涂层模型,计算了正在日本神冈矿山建造的低温干涉式引力波探测器KAGRA中这些镜子的散射分布。此外,我们进行了模拟,以展示多层散射和单表面散射模型在靠近镜子的机械结构后向散射方面的差异,以及对KAGRA探测器灵敏度的影响。我们表明,使用这些涂层产生的后向散射可能会增大近两个数量级,并且它们还会产生额外的散射特征,在引力波探测器的所有光学应用中都应予以考虑。

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