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测量高吸收性表面上的散射光分布以减少引力波探测器中的杂散光

Measuring scattering light distributions on high-absorptive surfaces for stray-light reduction in gravitational-wave detectors.

作者信息

Zeidler Simon, Akutsu Tomotada, Torii Yasuo, Aso Yoichi

出版信息

Opt Express. 2019 Jun 10;27(12):16890-16910. doi: 10.1364/OE.27.016890.

Abstract

In order to establish scattering measurements in material investigations for gravitational-wave detectors, we have built-up devices for measuring the hemispherical scattering distribution of materials which are planned to be used in those detectors as suppressors of scattered light. The measurement benches we have built, a hemispherical goniometer and a direct back-scatterometer, have a maximum background noise of ∼10 sr  BRDF at 1.064 μm wavelength which is the wavelength of the laser-light for our large interferometer for detecting gravitational waves, KAGRA. With these instruments, we have characterized the surface scattering of, e.g., NiP platings, metals, and different carbonaceous coatings, which are supposed to minimize the amount of scattered light in interferometers. The three most important materials for KAGRA's construction (SiC, "Solblack", and "VantaBlack") are presented in this paper. Furthermore, we will try to explain the scattering distributions with the generalized Harvey-Shack model (smooth-surface approximation) which is a common method for surface-scattering calculations. At the end, we give also some valuations about the vacuum compatibility of the materials, which is important for instruments like KAGRA that work under ultra-high vacuum conditions.

摘要

为了在引力波探测器的材料研究中建立散射测量,我们搭建了用于测量材料半球散射分布的装置,这些材料计划用作探测器中的散射光抑制器。我们搭建的测量台,一个半球形测角仪和一个直接背散射仪,在1.064μm波长处的最大背景噪声约为10 sr BRDF,这是我们用于探测引力波的大型干涉仪KAGRA的激光波长。利用这些仪器,我们表征了例如NiP镀层、金属和不同含碳涂层的表面散射,这些材料旨在使干涉仪中的散射光量最小化。本文介绍了KAGRA建造中最重要的三种材料(碳化硅、“Solblack”和“VantaBlack”)。此外,我们将尝试用广义哈维-沙克模型(光滑表面近似)来解释散射分布,这是一种用于表面散射计算的常用方法。最后,我们还对材料的真空兼容性给出了一些评估,这对于像KAGRA这样在超高真空条件下工作的仪器很重要。

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