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A Study of Ring Laser Gyroscopes

机译:环形激光陀螺仪的研究

摘要

This thesis presents a study of a 1.6 metre square, helium-neon based ring laser gyroscope (denoted PR-1). This device is mounted on one of the internal walls of a high rise building. After optimisation a cavity Q of 2.9x10¹¹ and a sensitivity to rotation of approximately 10⁻³ of the background Earth bias was obtained. A detailed investigation of the single mode operating regime and multi-mode thresholds was undertaken and could be well accounted for with a simple model of the gain curves. A key feature of the operation of PR-1 is persistent longitudinal mode hopping. It is shown that by running the laser at selective high powers, one obtains CW mode locked operation thereby negating the influence of mode hopping and allowing for long time data acquisition. PR-1 was used to demonstrate oscillation of the Rutherford building on its second fundamental mode during an earthquake. In a separate investigation, a range of supermirrors were studied to determine the optimum configuration in a 4 by 4 metre ring laser. The set with the highest finesse prevailed despite the comparatively low light levels on the photo detectors. The geometric stability of the lasers was not found to be a significant factor.
机译:本文提出了对一个1.6米见方,基于氦氖的环形激光陀螺仪(表示为PR-1)的研究。该设备安装在高层建筑物的内壁之一上。在优化之后,获得的腔Q为2.9×10 11,并且对旋转的灵敏度约为背景大地偏置的10 -3。对单模工作模式和多模阈值进行了详细的研究,并可以用简单的增益曲线模型很好地说明这一点。 PR-1操作的关键特征是持续纵向模式跳跃。结果表明,通过以选择的高功率运行激光器,可以获得CW锁模操作,从而消除了模式跳变的影响,并允许长时间的数据采集。 PR-1用于演示卢瑟福大楼在地震中以其第二基本模式的振动。在另一项研究中,研究了一系列超级镜,以确定4 x 4米环形激光器中的最佳配置。尽管光检测器上的光线水平相对较低,但仍具有最高的技巧。没有发现激光器的几何稳定性是重要的因素。

著录项

  • 作者

    Rabeendran Nishanthan;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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