Investigation of a ring confocal resonator sample designed to work as an optical resonator gyroscope sensitive element

Yuri V. Filatov, A. Kukaev, E. Shalymov, Vladimir Y. Venediktov
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引用次数: 1

Abstract

A sample of a ring confocal resonator designed to operate as a sensitive element of an optical resonator gyroscope is studied. The sample has a monoblock design - the resonator is a single block (prism) with reflective surfaces operating on the effect of total internal reflection. The optical contour of the resonator has the shape of a square with a side length of 10 mm and is formed by four reflective surfaces. Three reflecting surfaces are flat, and one is toroidal with curvature radii in the meridional and sagittal planes that satisfy the confocality condition. The resonator is designed to operate at wavelengths of about 1.55 μm. The advantages of using a of a ring confocal resonator as a sensitive element of an optical resonator gyroscope are analyzed. In particular, it is shown that the reduction of the angular velocity measurement error caused by the optical Kerr effect becomes possible (compared to the use of a waveguide cavity and a whispering gallery mode cavity). The resistance of the system to external influences also improves.
一种环形共聚焦谐振器样品设计用于光学谐振器陀螺仪敏感元件的研究
研究了作为光学谐振陀螺仪敏感元件的环形共聚焦谐振器样品。样品具有单块设计-谐振器是一个单块(棱镜),反射面在全内反射的作用下工作。谐振器的光学轮廓为边长为10mm的正方形,由四个反射面组成。三个反射面为平面,一个为环面,在子午面和矢状面上的曲率半径满足共焦条件。该谐振器的工作波长约为1.55 μm。分析了环形共聚焦谐振器作为光学谐振陀螺仪敏感元件的优点。特别是,它表明,减少由光学克尔效应引起的角速度测量误差成为可能(与使用波导腔和耳语廊模式腔相比)。系统对外部影响的抵抗力也提高了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
9 weeks
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