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Development of mirror coatings for gravitational-wave detectors

机译:重力波探测器的镜面涂层的开发

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摘要

Gravitational waves are detected by measuring length changes between mirrors in the arms of kilometre-long Michelson interferometers. Brownian thermal noise arising from thermal vibrations of the mirrors can limit the sensitivity to distance changes between the mirrors, and, therefore, the ability to measure gravitational-wave signals. Thermal noise arising from the highly reflective mirror coatings will limit the sensitivity both of current detectors (when they reach design performance) and of planned future detectors. Therefore, the development of coatings with low thermal noise, which at the same time meet strict optical requirements, is of great importance. This article gives an overview of the current status of coatings and of the different approaches for coating improvement.This article is part of a discussion meeting issue ‘The promises of gravitational-wave astronomy’.
机译:引力波是通过测量千米长的迈克尔逊干涉仪臂中反射镜之间的长度变化来检测的。由反射镜的热振动引起的布朗热噪声会限制对反射镜之间的距离变化的敏感性,并因此限制了测量重力波信号的能力。高反射率镜面涂层产生的热噪声将限制电流探测器(达到设计性能时)和计划中的未来探测器的灵敏度。因此,开发同时满足严格的光学要求的低热噪声的涂料非常重要。本文概述了涂层的现状以及改进涂层的不同方法。本文是讨论会议议题“引力波天文学的承诺”的一部分。

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