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Laser systems for gravitational wave detection

机译:用于重力波检测的激光系统

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This paper reports on the status of the Virgo detector, now on its commissioning phase: we describe the setup, the implemented functions, we discuss the spectral resolution measured during the last commissioning data taking, we present some of the practical issues. We show the role of the optical metrology in the instrument. Its first role is on the apparatus design: we show how the optical design of Virgo improves the sensitivity compared to a simple Michelson interferometer. The laser beam needs to be very stable, in the detection band 10 Hz-10 kHz: beam pointing, power stability and frequency stability. We show that this can be achieved using very stable references and enhanced feedback loops. Optical metrology is also necessary to measure the mirror substrates and surfaces and ensure that they have the required properties: roughness, absorption, and local defects, transmission maps. The output of optical simulations using these maps can be compared with in-situ measurement of some global parameters: cavity finesses, mirror curvatures, contrast defect.
机译:本文报告了处女座探测器的状态,目前处于调试阶段:我们描述了设置过程,已实现的功能,我们讨论了在最后一次调试数据采集过程中测得的光谱分辨率,并提出了一些实际问题。我们展示了光学计量学在仪器中的作用。它的首要作用是在设备设计上:我们展示了处女座的光学设计与简单的迈克尔逊干涉仪相比如何提高灵敏度。激光束必须在10 Hz-10 kHz的检测频带内非常稳定:光束指向,功率稳定性和频率稳定性。我们表明,可以使用非常稳定的参考和增强的反馈循环来实现这一点。光学计量对于测量镜面基板和表面并确保其具有所需的属性(粗糙度,吸收率和局部缺陷,透射图)也是必要的。可以将使用这些图的光学模拟输出与某些全局参数的原位测量进行比较:腔体细度,镜面曲率,对比度缺陷。

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