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Geometrical scale-factor stabilization of square cavity ring laser gyroscopes

机译:方腔环形激光陀螺仪的几何比例因子稳定

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摘要

Large frame ring laser gyros performances are ultimately limited by the instabilities of their geometrical parameters. We present the experimental activity on the GP2 ring laser gyro. GP2 is a ring laser gyro devoted to develop advanced stabilization techniques of the ring cavity geometrical scale-factor. A method based on optical interferometry has been developed for canceling the deformations of the resonator. The method is based on the measurement and stabilization of the absolute length of the cavity perimeter and of the resonators formed by the opposite cavity mirrors. The optical frequency reference in the experiment is an iodine-stabilized He-Ne laser, with a relative frequency stability of 10. The measurement of the absolute length of the two resonators has been demonstrated up to now on a test bench. We discuss the experimental results on GP2: the present performances as a ring laser gyro and the stabilization scheme to be implemented in the near future.
机译:大框架环形激光陀螺仪的性能最终受到其几何参数的不稳定性的限制。我们介绍了对GP2环形激光陀螺仪的实验活动。 GP2是一种环形激光陀螺仪,致力于开发环形腔几何比例因子的先进稳定技术。已经开发出一种基于光学干涉术的方法来消除谐振器的变形。该方法基于腔周长和由相对的腔镜形成的谐振器的绝对长度的测量和稳定。实验中的光频率参考是碘稳定的He-Ne激光器,相对频率稳定度为10。到目前为止,已经在测试台上演示了两个谐振器绝对长度的测量。我们讨论了有关GP2的实验结果:作为环形激光陀螺仪的当前性能以及将在不久的将来实现的稳定方案。

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