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An all-sky search for continuous gravitational waves.

机译:全天候搜寻连续的引力波。

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摘要

Gravitational radiation is a direct consequence of general relativity, yet to this day only indirect confirmation of its existence has been obtained.;LIGO is an experiment that aims to detect gravitational waves by comparing the lengths of the two arms of Michelson interferometers. It has recently reached design sensitivity, and a number of searches for intermittent and continuous signals are underway. In particular, isolated rotating neutron stars are expected to emit gravitational radiation of nearly constant frequency and amplitude.;Because the gravitational wave signal amplitudes are thought to be extremely weak, long time integrations must be carried out to detect a signal. The search is complicated by the motion of the Earth (daily rotation and orbital motion) which induces substantial modulations of detected frequency and amplitude that are highly dependent on source location. Large amounts of acquired data make this search computationally difficult.;We describe our search for such signals using an algorithm called PowerFlux and provide upper limits. In particular, at 153 Hz we obtain a sensitivity of 4.25x10-25 for circularly polarized sources in the polar sky region. At a signal frequency of 1100 Hz we are sensitive to neutron stars of ellipticity of ∼ 10-6 at distances up to 500 pc.;We also describe a prototype for a high-sampling-rate wavefront camera that can be used to monitor laser beam characteristics at radio frequencies.
机译:引力辐射是广义相对论的直接结果,但迄今为止,仅获得对其存在的间接确认。LIGO是一项旨在通过比较迈克尔逊干涉仪两臂长度来检测引力波的实验。它最近已达到设计灵敏度,并且正在搜索间歇和连续信号。特别是,孤立的旋转中子星有望发出几乎恒定频率和振幅的引力辐射。;由于重力波信号的振幅被认为是非常微弱的,因此必须进行长时间积分以检测信号。地球的运动(每日旋转和轨道运动)使搜索变得复杂,这引起了对检测到的频率和幅度的实质性调制,而这些调制高度依赖于信号源的位置。大量的采集数据使搜索变得难以计算。我们使用称为PowerFlux的算法描述了对此类信号的搜索并提供了上限。特别是在153 Hz时,我们对极地天空区域中的圆极化源的灵敏度为4.25x10-25。在1100 Hz的信号频率下,我们对椭圆率高达10-6的中子星的敏感度高达500 pc .;我们还描述了一种可用于监视激光束的高采样率波前相机的原型射频特性。

著录项

  • 作者

    Dergachev, Vladimir.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Physics Astrophysics.;Physics Radiation.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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