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SINGLE-MODE OPTICAL-FIBER RESONATOR AND APPLICATIONS TO SENSING (FIBER SENSOR, FIBER LASER, FIBER GYROSCOPE).

机译:单模光纤谐振器及其在传感中的应用(光纤传感器,光纤激光,光纤陀螺仪)。

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摘要

A new, potentially important fiber-optic device, the fiber resonator, is presented. A length of single-mode optical fiber is formed into a closed ring via a fiber directional coupler to constitute a low-loss, all-fiber ring cavity. The properties of this cavity resonator are similar to those of any resonant device where energy storage occurs at discrete excitation frequencies. The finesse of such a fiber cavity can approach 100.; A review of several recently developed single-mode fiber-optic components is given. These low-loss components are essential to the high performance of the all-single-mode fiber resonator. A theory of the resonator is derived which closely matches experimental performance. The resonator can be a building block upon which more complicated sensor systems can be constructed. Three such systems were built and are described in detail.; One system is sensitive fiber-optic interferometer in which any environmental perturbation affecting the phase of light in the fiber resonator, such as that caused by acoustic waves, can be detected. The sensitivity of this device is superior to that of other types of fiber sensors recently developed. Environmentally-induced periodic changes in the resonator optical path length as small as ten nuclear diameters are detectable.; The second system makes use of the small optical nonlinearities of the fused silica fiber material to produce an all-fiber ring laser. The high-amplitude optical fields within the resonator allow such nonlinear interactions to occur at low excitation powers. Stimulated Brillouin scattering provides gain and the resonator's low-loss optical feedback allows laser action to occur. The possibility of using this device as an active fiber-optic ring laser gyroscope is assessed.; The third system described is a passive fiber-optic ring resonator gyroscope. The Sagnac effect produces a rotationally-induced change in the resonant frequencies of the resonator which is measured with an external laser. This device presently is sensitive to rotations on the order of Earth's rotation rate, and much room for improvement theoretically is possible.; Finally, future applications of the fiber resonator are discussed. High-resolution optical spectrum analysis, optical filtering, and temperature sensing are among the possibilities.
机译:提出了一种新的,潜在重要的光纤设备,即光纤谐振器。一段单模光纤通过光纤定向耦合器形成一个闭合环,以构成一个低损耗的全光纤环形腔。该腔谐振器的特性与任何在离散激励频率下进行能量存储的谐振器的特性相似。这种纤维腔的细度可以达到100。综述了几种最近开发的单模光纤组件。这些低损耗组件对于全单模光纤谐振器的高性能至关重要。得出了与实验性能非常匹配的谐振器理论。谐振器可以是构建块,可以在其上构建更复杂的传感器系统。建立并详细描述了三个这样的系统。一种系统是敏感的光纤干涉仪,其中可以检测到任何影响光纤谐振器中光相位的环境扰动,例如声波引起的扰动。该设备的灵敏度优于最近开发的其他类型的光纤传感器。谐振器光路长度的环境引起的周期性变化可检测到小至十个核直径。第二个系统利用石英玻璃纤维材料的微小光学非线性来产生全光纤环形激光器。谐振器内的高振幅光场允许这种非线性相互作用在低激发功率下发生。受激布里渊散射提供增益,谐振器的低损耗光反馈允许发生激光作用。评估了将该设备用作有源光纤环形激光陀螺仪的可能性。所描述的第三种系统是无源光纤环形谐振器陀螺仪。萨格纳克效应在谐振器的谐振频率中产生旋转引起的变化,该变化由外部激光器测量。目前,该装置对地球旋转速率量级的旋转敏感,理论上有很大的改进空间。最后,讨论了光纤谐振器的未来应用。高分辨率光谱分析,光学滤波和温度感测是可能的。

著录项

  • 作者

    STOKES, LOREN FRANK.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:51:18

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