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Generation of a flat-top laser beam for gravitational wave detectors by means of a nonspherical Fabry-Perot resonator

机译:通过非球形法布里-珀罗谐振器产生用于引力波探测器的平顶激光束

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摘要

We have tested a new kind of Fabry—Perot long-baseline optical resonator proposed to reduce the thermal noise sensitivity of gravitational wave interferometric detectors—the "mesa beam" cavity—whose flat top beam shape is achieved by means of an aspherical end mirror. We present the fundamental mode intensity pattern for this cavity and its distortion due to surface imperfections and tilt misalignments, and contrast the higher order mode patterns to the Gauss-Laguerre modes of a spherical mirror cavity. We discuss the effects of mirror tilts on cavity alignment and locking and present measurements of the mesa beam tilt sensitivity.
机译:我们已经测试了一种新型的Fabry-Perot长基线光学谐振器,该谐振器提出来降低重力波干涉式探测器(“ Mes Beam”腔)的热噪声灵敏度,该探测器的平顶光束形状是通过非球面端镜实现的。我们介绍了该腔的基本模式强度模式及其由于表面缺陷和倾斜未对准引起的变形,并将高阶模式模式与球面镜腔的高斯-拉格勒模式进行了对比。我们讨论了镜子倾斜对腔对准和锁定的影响,并提出了台面光束倾斜灵敏度的测量方法。

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