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The polarization Sagnac interferometer for gravitational wave detection.

机译:偏振Sagnac干涉仪,用于重力波检测。

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摘要

Future advanced interferometric gravitational wave detectors will be limited by thermal distortions induced by high circulating power. An all-reflective configuration based on the Sagnac interferometer, presented here, is well suited to operation with high circulating power. A polarization scheme is presented that allows the interferometer to be used in a reciprocal configuration, so that static imperfections and thermally induced distortions of the beamsplitter and optics have a minimal effect on the interference contrast. The necessary low-frequency response of the interferometer requires delay-lines in the arms. To deal with the noise introduced by scattered light in the delay lines, a laser frequency sweep is presented that frequency shifts the scattered light so that it does not produce noise in the measurement band. The control requirements and alignment tolerances are calculated for the components of the detector and they are compared with the levels necessary for an alternative interferometer configuration, the Fabry-Perot Michelson, to highlight the advantages and disadvantages of the polarization Sagnac interferometer.; The all-reflective delay-line polarization Sagnac interferometer design is demonstrated on a 10 m prototype interferometer with suspended optics that incorporates the laser frequency sweep to provide a shot-noise-limited phase sensitivity of Δ&phis; = 10−9 rad Hz −1/2 at frequencies as low as 200 Hz. Scaling this prototype to several kilometers with kilowatts of circulating power requires several technical improvements in high-power solid-state lasers, second harmonic generation, and the fabrication of large mirrors, which are likely to be made in the next 10 years.
机译:未来先进的干涉重力波探测器将受到高循环功率引起的热变形的限制。此处介绍的基于Sagnac干涉仪的全反射配置非常适合以高循环功率运行。提出了一种极化方案,该方案允许将干涉仪用于互易配置,从而使分束器和光学器件的静态缺陷和热引起的畸变对干涉对比度的影响最小。干涉仪的必要低频响应需要臂中的延迟线。为了处理由延迟线中的散射光引入的噪声,提出了一种激光扫频技术,它可以使散射光发生频率偏移,从而在测量频带中不会产生噪声。计算出探测器组件的控制要求和对准公差,并将它们与替代干涉仪配置Fabry-Perot Michelson所需的水平进行比较,以突出偏振Sagnac干涉仪的优缺点。全反射延迟线偏振Sagnac干涉仪设计在具有悬挂式光学器件的10 m原型干涉仪上进行了演示,该干涉仪具有激光扫频功能,可提供散点噪声限制的Δφ相位灵敏度;在低至200 Hz的频率下= 10 −9 rad Hz -1/2 将该原型机扩展至几千千瓦的循环功率,需要对大功率固态激光器,二次谐波的产生以及大型镜的制造进行几项技术改进,而这些技术有可能在未来10年内完成。

著录项

  • 作者

    Beyersdorf, Peter Thomas.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

  • 入库时间 2022-08-17 11:46:49

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