首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Angular control of optical cavities in a radiation-pressure-dominated regime: the Enhanced LIGO case
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Angular control of optical cavities in a radiation-pressure-dominated regime: the Enhanced LIGO case

机译:辐射压强状态下光腔的角度控制:增强型LIGO案例

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We describe the angular sensing and control (ASC) of 4 km detectors of the Laser Interferometer Gravitational-Wave Observatory (LIGO). Enhanced LIGO, the culmination of the first generation LIGO detectors, operated between 2009 and 2010 with about 40 kW of laser power in the arm cavities. In this regime, radiation-pressure effects are significant and induce instabilities in the angular opto-mechanical transfer functions. Here we present and motivate the ASC design in this extreme case and present the results of its implementation in Enhanced LIGO. Highlights of the ASC performance are successful control of opto-mechanical torsional modes, relative mirror motions of ≤ 1 × 10~(-7) rad rms, and limited impact on in-band strain sensitivity.
机译:我们描述了激光干涉仪引力波天文台(LIGO)的4 km检测器的角度感测和控制(ASC)。增强型LIGO是第一代LIGO探测器的巅峰之作,在2009年至2010年之间运行,臂腔中的激光功率约为40 kW。在这种情况下,辐射压力效应显着,并导致角度光机械传递函数不稳定。在这里,我们介绍并激发了这种极端情况下的ASC设计,并介绍了其在增强型LIGO中实施的结果。 ASC性能的亮点是可以成功控制光机械扭转模式,相对镜面运动≤1×10〜(-7)rad rms,并且对带内应变灵敏度的影响有限。

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