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The detection of gravitational waves: the contribution of the Applied Physics Institute, Russian Academy of Sciences

机译:引力波的检测:俄罗斯科学院应用物理研究所的贡献

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摘要

September 14, 2015 marked the day that the LIGO collaboration recorded a gravitational-wave signal arriving from the merger of two black holes that occurred 1.3 billion years ago. The LIGO detector is based on a Michelson interferometer with an arm length of 4 km. The achieved sensitivity makes it possible to detect a change of the arm length smaller than 10(-19) meter. We discuss the physical problems that were solved in order to achieve this unprecedented sensitivity. The most essential contribution of the Applied Physics Institute, Russian Academy of Sciences, to the LIGO detector is the invention of unique Faraday isolators that operate with high laser radiation power. The absorption of radiation in a magneto-active medium unavoidably causes it to heat up and thermally induces polarization and phase distortion of the laser beam. This article presents an analysis of all the distortions of the laser beam from the viewpoint of the degradation of the parameters of the isolator. The mechanisms and key physical quantities responsible for the various forms of the distortions have been determined. The existing methods of compensating and suppressing parasitic thermal effects are described in detail. (C) 2017 Optical Society of America
机译:2015年9月14日标志着Ligo合作记录了从23亿年前发生的两个黑洞的合并到达的引力波信号。 Ligo检测器基于迈克森干涉仪,臂长4公里。实现的灵敏度使得可以检测小于10(-19)米的臂长的变化。我们讨论了解决这种前所未有的敏感性的解决问题。应用物理研究所,俄罗斯科科学院对LIGO探测器的最重要贡献是本发明的独特的法拉第隔离器,其具有高激光辐射功率。磁性活性介质中的辐射的吸收不可避免地使其加热并热引起激光束的偏振和相失真。本文从隔离器参数的降解的观点来介绍激光束的所有扭曲的分析。已经确定了负责各种形式的失真的机制和关键物理量。详细描述了现有的补偿和抑制寄生热效应的方法。 (c)2017年光学学会

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  • 来源
    《Journal of optical technology》 |2017年第10期|共8页
  • 作者

    Khazanov E. A.; Sergeev A. M.;

  • 作者单位

    Russian Acad Sci Inst Appl Phys Fed Res Ctr Fed State Budgetary Sci Enterprise Nizhnii Novgorod Russia;

    Russian Acad Sci Inst Appl Phys Fed Res Ctr Fed State Budgetary Sci Enterprise Nizhnii Novgorod Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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