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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Controlling kilometre-scale interferometric detectors for gravitational wave astronomy: Active phase noise cancellation using EOMs
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Controlling kilometre-scale interferometric detectors for gravitational wave astronomy: Active phase noise cancellation using EOMs

机译:控制重力波天文学的千米级干涉仪探测器:使用EOM消除有源相位噪声

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The second generation of Gravitational waves detectors are kilometric Michelson interferometers with additional recycling Fabry-Perot cavities on the arms and the addition of two more recycling cavities to enhance their sensitivity, with the particularity that all the mirrors are suspended. In order to control them a new technique, based on the use of auxiliary lasers, has been developed to bring the interferometer to its working point, with all the cavities on their resonance, in an adiabatic Way. The implementation of this technique in Advanced Virgo is under preparation and the propagation of a stable laser through a 3-km optical fibre is one of the most problematic issues. A new technique of active phase noise cancellation based on the use of Electro Optical Modulators has been developed, and a first prototype has been successfully tested.
机译:第二代引力波探测器是公里数的迈克尔逊干涉仪,臂上有额外的可循环使用的法布里-珀罗腔,并另外增加了两个可循环使用的腔室以增强其灵敏度,其特殊之处在于所有反射镜均已悬挂。为了控制它们,已经开发了一种基于使用辅助激光器的新技术,以绝热的方式将干涉仪带到其工作点,并使所有谐振腔共振。该技术在高级处女座中的实施尚在准备中,稳定的激光通过3公里的光纤传播是最成问题的问题之一。已经开发了一种基于电光调制器的有源相位噪声消除新技术,并且第一个原型已经成功测试。

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