Lin Chu-En, Yu Chih-Jen, Chen Chii-Chang
Department of Optics and Photonics, National Central University, 32001 Jhongli, Taiwan.
Opt Express. 2013 Apr 22;21(8):9947-58. doi: 10.1364/OE.21.009947.
In this article, we propose an optical heterodyne common-path gyroscope which has common-path configuration and full-dynamic range. Different from traditional non-common-path optical heterodyne technique such as Mach-Zehnder or Michelson interferometers, we use a two-frequency laser light source (TFLS) which can generate two orthogonally polarized light with a beat frequency has a common-path configuration. By use of phase measurement, this optical heterodyne gyroscope not only has the capability to overcome the drawback of the traditional interferometric fiber optic gyro: lack for full-dynamic range, but also eliminate the total polarization rotation caused by SMFs. Moreover, we also demonstrate the potential of miniaturizing this gyroscope as a chip device. Theoretically, if we assume that the wavelength of the laser light is 1550nm, the SMFs are 250m in length, and the radius of the fiber ring is 3.5cm, the bias stability is 0.872 deg/hr.
在本文中,我们提出了一种具有共光路配置和全动态范围的光学外差共光路陀螺仪。与传统的非共光路光学外差技术(如马赫 - 曾德尔或迈克尔逊干涉仪)不同,我们使用一种双频激光光源(TFLS),它能产生具有拍频的两个正交偏振光且具有共光路配置。通过相位测量,这种光学外差陀螺仪不仅有能力克服传统干涉式光纤陀螺仪全动态范围不足的缺点,还能消除单模光纤引起的总偏振旋转。此外,我们还展示了将这种陀螺仪小型化为芯片器件的潜力。理论上,如果我们假设激光波长为1550nm,单模光纤长度为250m,光纤环半径为3.5cm,偏置稳定性为0.872度/小时。