...
【24h】

Precise calibration of LIGO test mass actuators using photon radiation pressure

机译:利用光子辐射压力精确校准LIGO测试质量执行器

获取原文
获取原文并翻译 | 示例
           

摘要

Precise calibration of kilometer-scale interferometric gravitational wave detectors is crucial for source localization and waveform reconstruction. A technique that uses the radiation pressure of a power-modulated auxiliary laser to induce calibrated displacements of one of the similar to 10 kg arm cavity mirrors, a so-called photon calibrator, has been demonstrated previously and has recently been implemented on the LIGO detectors. In this paper, we discuss the inherent precision and accuracy of the LIGO photon calibrators and several improvements that have been developed to reduce the estimated voice coil actuator calibration uncertainties to less than 2% (1s). These improvements include accounting for rotation-induced apparent length variations caused by interferometer and photon calibrator beam centering offsets, absolute laser power measurement using temperature-controlled InGaAs photodetectors mounted on integrating spheres and calibrated by NIST, minimizing errors induced by localized elastic deformation of the mirror surface by using a two-beam configuration with the photon calibrator beams symmetrically displaced about the center of the optic and simultaneously actuating the test mass with voice coil actuators and the photon calibrator to minimize fluctuations caused by the changing interferometer response. The photon calibrator is able to operate in the most sensitive interferometer configuration, and is expected to become a primary calibration method for future gravitational wave searches.
机译:千米级干涉重力波检测器的精确校准对于信号源定位和波形重建至关重要。先前已经证明了一种使用功率调制辅助激光器的辐射压力来诱导类似于10千克臂腔镜之一的校准位移的技术,即所谓的光子校准器,并且最近已在LIGO检测器上实现该技术。 。在本文中,我们讨论了LIGO光子校准器的固有精度和准确度,并进行了一些改进,以将估计的音圈执行器校准不确定性降低到小于2%(1s)。这些改进包括解决由干涉仪和光子校准器光束居中偏移引起的旋转引起的表观长度变化,使用安装在积分球上并由NIST校准的温度控制的InGaAs光电探测器进行绝对激光功率测量,将镜的局部弹性变形引起的误差最小化通过使用两束配置使光子校准器光束围绕光学器件的中心对称位移,并同时使用音圈致动器和光子校准器来驱动测试质量,以最大程度地减小由变化的干涉仪响应引起的波动,从而形成表面。光子校准器能够在最敏感的干涉仪配置中运行,并且有望成为将来搜索重力波的主要校准方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号