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Nonlinear optical effects in the LIGO gravitational-wave interferometer

机译:LIGO重力波干涉仪中的非线性光学效应

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LIGO (Laser Interferometer Gravitational-wave Observatory) is a trio of sensitive Michelson interferometers designed to detect extremely relativistic astrophysical processes by the ripples they produce in spacetime. For best sensitivity, these interferometers are kilometers long, contain nearly unstable cavities, and operate at high optical power, making them uniquely susceptible to thermal aberrations and radiation-pressure-derived instabilities. We describe the LIGO interferometers, and their high power lasers and input optics, and described how thermal aberrations have been successfully controlled using adaptive corrective heating. The Advanced LIGO detectors, an upgrade to LIGO planned for installation in the year 2010, will operate with even higher optical power. We detail the additional challenges in construction and thermal compensation for Advanced LIGO, and detail how radiation-pressure derived instabilities influence the design, operation, and sensitivity of Advanced LIGO.
机译:激光干涉仪引力波天文台(LIGO)是三重迈克尔逊干涉仪,旨在通过它们在时空中产生的波动来探测极端相对论的天体物理过程。为了获得最佳灵敏度,这些干涉仪的长度为千米,几乎包含不稳定的空腔,并且以高光功率工作,从而使其特别容易受到热像差和辐射压力引起的不稳定性的影响。我们描述了LIGO干涉仪,其高功率激光器和输入光学器件,并描述了如何使用自适应校正加热成功地控制了热像差。 Advanced LIGO探测器是LIGO的升级版,计划在2010年安装,它将以更高的光功率运行。我们详细介绍了高级LIGO在构造和热补偿方面的其他挑战,并详细介绍了辐射压力引起的不稳定性如何影响高级LIGO的设计,操作和灵敏度。

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