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Point absorbers in Advanced LIGO

机译:高级利戈的点吸收剂

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Small, highly absorbing points are randomly present on the surfaces of the main interferometer optics in Advanced LIGO. The resulting nanometer scale thermo-elastic deformations and substrate lenses from these micronscale absorbers significantly reduce the sensitivity of the interferometer directly though a reduction in the power-recycling gain and indirect interactions with the feedback control system. We review the expected surface deformation from point absorbers and provide a pedagogical description of the impact on power buildup in second generation gravitational wave detectors (dual-recycled Fabry-Perot Michelson interferometers). This analysis predicts that the power-dependent reduction in interferometer performance will significantly degrade maximum stored power by up to 50% and, hence, limit GW sensitivity, but it suggests system wide corrections that can be implemented in current and future GW detectors. This is particularly pressing given that future GW detectors call for an order of magnitude more stored power than currently used in Advanced LIGO in Observing Run 3. We briefly review strategies to mitigate the effects of point absorbers in current and future GW wave detectors to maximize the success of these enterprises. (C) 2021 Optical Society of America
机译:在先进的LIGO中,主要干涉仪光学元件的表面上随机存在小的、高吸收点。这些微米级吸收体产生的纳米级热弹性变形和基底透镜通过降低功率循环增益和与反馈控制系统的间接交互作用,直接显著降低了干涉仪的灵敏度。我们回顾了点吸收器的预期表面变形,并从教学角度描述了第二代引力波探测器(双循环法布里-珀罗-迈克尔逊干涉仪)对功率积累的影响。该分析预测,干涉仪性能的功率依赖性降低将显著降低最高50%的最大存储功率,从而限制GW灵敏度,但它建议可以在当前和未来的GW探测器中实施系统范围内的校正。考虑到未来的GW探测器需要比目前先进LIGO在观测运行3时使用的存储功率多一个数量级,这一点尤其紧迫。我们简要回顾了缓解当前和未来GW波探测器中点吸收器影响的策略,以最大限度地提高这些企业的成功率。(2021)美国光学学会

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