Department of Physics, Sri Sathya Sai Institute of Higher Learning, Prasanthi Nilayam - 515134, A. P., India.
Sci Rep. 2016 Oct 3;6:34634. doi: 10.1038/srep34634.
We report the first proof-of-principle demonstration of the resonant optical gyroscope with reflector that we have recently proposed. The device is very different from traditional optical gyroscopes since it uses the inherent coupling between the clockwise and counterclockwise propagating waves to sense the rotation. Our demonstration confirms our theoretical analysis and simulations. We also demonstrate a novel method of biasing the gyroscope using orthogonal polarization states. The simplicity of the structure and the readout method, the theoretically predicted high sensitivities (better than 0.001 deg/hr), and the possibility of further performance enhancement using a related laser based active device, all have immense potential for attracting fresh research and technological initiatives.
我们报告了最近提出的具有反射器的谐振式光学陀螺仪的首个原理验证演示。该设备与传统的光学陀螺仪非常不同,因为它使用顺时针和逆时针传播波之间的固有耦合来感测旋转。我们的演示证实了我们的理论分析和模拟。我们还展示了一种使用正交偏振态对陀螺仪进行偏置的新方法。结构和读出方法简单,理论预测的高灵敏度(优于 0.001°/hr),以及使用相关的基于激光的有源器件进一步提高性能的可能性,都为吸引新的研究和技术计划提供了巨大的潜力。