[1] E J Post. Sagnac effect. Reviews of Modern Physics, 39, 475-493(1967).
[2] Armenice M N, Ciminelli C, Dell’ollo F, et al. Advances in Gyroscope Technologies[M]. Heidelberg: Springer, 2010.
[3] Zhongqi Tan, Xiaowei Jiang, Yuanhao Mao, et al. Ultra-smooth surface with 0.4 Å roughness on fused silica. Ceramics International, 49, 7245-7251(2023).
[4] L N Menegozzi, W E Lamb. Theory of a ring laser. Physical Review A: Atomic, Molecular and Optical Physics, 8, 2103-2125(1973).
[5] R J C Spreeuw, Neelen R Centeno, Druten N J Van, et al. Mode coupling in a He-Ne ring laser with backscattering. Physical Review A: Atomic, Molecular and Optical Physics, 42, 4315-4324(1990).
[7] Stover J. Optical Scattering: Measurement Analysis[M]. 3rd ed. Bellingham: SPIE Optical Engineering Press, 2012.
[8] E Kröger, E Kretschmann. Scattering of light by slightly rough surfaces or thin films including plasma resonance emission. Zeitschrift für Physik A Hadrons and Nuclei, 237, 1-15(1970).
[9] M Nakazawa. Rayleigh backscattering theory for single-mode optical fibers. Journal of the Optical Society of America, 73, 1175-1180(1983).
[10] Jungwirth D R. Ring laser cavity backscatter measurement. US: 64866591 A[P]. 19910131.
[11] Zhenfang Fan, Hui Luo, Guangfeng Lu, et al. Online effective backscattering estimation for ring laser gyro. Chinese Optics Letters, 10, 36-38(2012).
[12] K Iwatsuki, K Hotate, M Higashiguchi. Backscattering in an optical passive ring-resonator gyro: experiment. Applied Optics, 25, 4448-4451(1986).
[13] K Iwatsuki, K Hotate, M Higashiguchi. Resonance characteristics of backscattering in optical passive ring-resonator gyro. Electronics Letters, 22, 135-137(1986).
[14] Ma Huilian, He Zuyuan, Hotate K. Sensitivity improvement of waveguidetype optical passive ring resonat gyroscope by carrier suppression[C]International Conference on Optical Fibre Senss. 20th International Conference on Optical Fibre Senss, 2009.
[15] Qinghua Zeng, Jianye Liu, Jizhou Lai, . Newest developments of ring laser gyro. Journal of Transducer Technology, 23, 1-4(2004).
[16] Shijie Yang, Miao Tang, Shilin Wang, . Review of backscattering in ring laser gyroscope. Flight Control & Detection, 4, 25-32(2021).
[17] Haibo Zhou, Jianye Liu, Jizhou Lai, . Development status of fiber-optic gyroscopes. Journal of Transducer Technology, 24, 1-3(2005).
[18] V Vali, R W Shorthill. Fiber ring interferometer. Applied Optics, 15, 1099-1100(1976).
[19] Arditty H, Shaw H J, Chodow M, et al. Reentrant fiberoptic approach to rotation sensing[C]Laser Inertial Rotation Senss, 1978: 138148.
[20] C C Cutler, S A Newton, H J Shaw. Limitation of rotation sensing by scattering. Optics Letters, 5, 488-490(1980).
[22] Martin J M, Winkler J T. Fiber optic laser gyro signal detection processing technique[C]Guided Wave Optical Systems Devices I, 1978: 98102.
[23] K Böhm, P Russer, E Weidel, et al. Low-noise fiber-optic rotation sensing. Optics Letters, 6, 64-66(1981).
[24] M Sanghadasa, P R Ashley, G A Lindsay, et al. Backscatter compensation in IFOG based inertial measurement units with polymer phase modulators. Journal of Lightwave Technology, 27, 806-813(2009).
[25] Seth W Lloyd, Vinayak Dangui, Michel J F Digonnet, et al. Measurement of reduced backscattering noise in laser-driven fiber optic gyroscopes. Optics Letters, 35, 121-123(2010).
[26] Fei Teng, Jin Jing, Zhang Zuchen, et al. Measurement of backreflection backscattering noise in high sensitivity photonic crystal fibreoptic gyroscope[C]Laser Science, 2016.
[27] Xinxin Suo, Haicheng Yu, Yongbin Yang, et al. Ultralow-noise broadband source for interferometric fiber optic gyroscopes employing a semiconductor optical amplifier. Applied Optics, 60, 3103-3107(2021).
[28] S R Balsamo, S Ezekiel. Passive ring resonator laser gyroscope. Applied Physics Letters, 30, 478-480(1977).
[29] D M Shupe. Fiber resonator gyroscope: sensitivity and thermal nonreciprocity. Applied Optics, 20, 286-289(1981).
[30] Zhuo Wang, Guochen Wang, S Kumar, et al. Recent advancements in resonant fiber optic gyro - A review. IEEE Sensors Journal, 22, 18240-18252(2022).
[31] K Iwatsuki, K Hotate, M Higashiguchi. Effect of Rayleigh backscattering in an optical passive ring-resonator gyro. Applied Optics, 23, 3916-3924(1984).
[32] Iwatsuki K, Hotate K, Higashiguchi M. Rayleigh backscattering in optical passive ringresonat gyro[C]2nd Intl Conf on Optical Fiber Senss: OFS''84, 1984: 313316.
[33] R Carroll, J E Potter. Backscatter and the resonant fiber-optic gyro scale factor. Journal of Lightwave Technology, 7, 1895-1900(1989).
[34] Kaiser T J, Cardarelli D, Walsh J G. Experimental developments in the RFOG[C]Fiber Optic Laser Senss VIII, 1991: 121126.
[35] G A Sanders, M G Prentiss, S Ezekiel. Passive ring resonator method for sensitive inertial rotation measurements in geophysics and relativity. Optics Letters, 6, 569-571(1981).
[36] R E Meyer, S Ezekiel, D W Stowe, et al. Passive fiber-optic ring resonator for rotation sensing. Optics Letters, 8, 644-646(1983).
[37] F Zarinetchi, S Ezekiel. Observation of lock-in behavior in a passive resonator gyroscope. Optics Letters, 11, 401-403(1986).
[38] K Takiguchi, K Hotate. Removal of lock-in phenomenon in optical passive ring-resonator gyros by using optical Kerr effect in fiber resonator. IEEE Photonics Technology Letters, 4, 810-812(1992).
[39] K Hotate, K Takiguchi, A Hirose. Adjustment-free method to eliminate the noise induced by the backscattering in an optical passive ring-resonator gyro. IEEE Photonics Technology Letters, 2, 75-77(1990).
[40] Xinquan Jiao, Yongqiu Zheng, Panlong An, . Method for determining optimized phase modulation parameters in resonator fiber optic gyro. Infrared and Laser Engineering, 44, 239-243(2015).
[41] Ning Liu, Yanxiong Niu, Lishuang Feng, et al. Suppression of backscattering induced noise by the sideband locking technique in a resonant fiber optic gyroscope. Chinese Optics Letters, 16, 42-46(2018).
[42] Hongchen Jiao, Lishuang Feng, Chunqi Zhang, et al. Design of low-crosstalk polarizing resonator and homologous multi-frequency differential detection for hollow-core photonic-crystal fiber optic gyro. Optics Express, 27, 19536-19547(2019).
[43] Yonggui Zhang, Lishuang Feng, Hui Li, et al. Resonant fiber optic gyroscope with three-frequency differential detection by sideband locking. Optics Express, 28, 8423-8435(2020).
[44] Wu Jiangfeng, Smiciklas M, Strjd L, et al. Resonat fiber optic gyro with high backscattererr suppression using two independent phaselocked lasers[C]24 th International Conference on Optical Fibre Senss, 2015.
[45] Strjd L, Qiu T, Salit M, et al. Improved bias perfmance in resonat fiber optic gyros using a novel modulation method f err suppression[C]Optical Fiber Senss, 2018.
[46] Hanzhao Li, Yi Lin, Liu Lu, et al. Signal processing improvement of passive resonant fiber optic gyroscope using a reciprocal modulation-demodulation technique. Optics Express, 28, 18103-18111(2020).
[47] Kang Zou, Wang Lei, Kan Chen, et al. Optimization of reciprocal modulation parameters in resonant fiber optic gyro. Journal of Lightwave Technology, 39, 5669-5675(2021).
[48] Lu Liu, Hanzhao Li, Shuang Liu, et al. Suppressing backscattering noise of a resonant fiber optic gyroscope using coherent detection. Applied Optics, 61, 4421-4428(2022).
[49] Shuangxiang Zhao, Qingwen Liu, Yuanyuan Liu, et al. Navigation-grade resonant fiber-optic gyroscope using ultra-simple white-light multibeam interferometry. Photonics Research, 10, 542-549(2022).
[50] K O Hill, D C Johnson, B S Kawasaki. CW Brillouin laser. Applied Physics Letters, 28, 608-609(1976).
[51] P J Thomas, H M Driel, G I Stegeman. Possibility of using an optical fiber brillouin ring laser for inertial sensing. Applied Optics, 19, 1906-1908(1980).
[52] R K Kadiwar, I P Giles. Optical fibre Brillouin ring laser gyroscope. Electronics Letters, 25, 1729-1731(1989).
[53] F Zarinetchi, S P Smith, S Ezekiel. Stimulated Brillouin fiber-optic laser gyroscope. Optics Letters, 16, 229-231(1991).
[54] Huang Shangyuan, Toyama K, Nicati P A , et al. Brillouin fiber optic gyro with pushpull phase modulat synthetic heterodyne detection[C]OAI, 1993: 4859.
[55] Hotate K, Yamashita S. Grasp of the behavi of lockin phenomenon a manner to overcome it in Brillouin fiber optic gyro[C]Proceedings of the 1998 Fiber Optic Laser Senss Applications, Including Distributed Multiplexed Fiber Optic Senss VII, 1998: 5765.
[56] Jingtong Geng, Liu Yang, Shuhua Zhao, . Recent development of resonant micro cavity in resonant micro-optical gyro. Infrared and Laser Engineering, 50, 20210044(2021).
[57] Lawrence A W. Thin film laser gyro. US: 7738179A [P]. 19790902.
[58] K Iwatsuki. Waveguide-type optical passive ring resonator gyro using time-division detection scheme. Electronics Letters, 25, 688-689(1989).
[59] Vannahme C, Suche H, Reza S, et al. Integrated Optical Ti: LiNbO3 ring resonat f rotation rate sensing[C]ECIO, 2009.
[60] K Suzuki, K Takiguchi, K Hotate. Monolithically integrated resonator microoptic gyro on silica planar lightwave circuit. Journal of Lightwave Technology, 18, 66-72(2000).
[61] Mao Hui, Ma Huilian, Jin Zhonghe. Resonat microoptic gyroscope based on the double phase modulation technique[C]CLEOQELS: 2010 Laser Science to Photonic Applications, 2010.
[62] Huaiyong Yu, Chunxi Zhang, Lishuang Feng, et al. Limitation of rotation sensing in IORG by Rayleigh backscattering noise. Europhysics Letters, 95, 64001-64004(2011).
[63] Yinzhou Zhi, Lishuang Feng, Junjie Wang, et al. Reduction of backscattering noise in a resonator integrated optic gyro by double triangular phase modulation. Applied Optics, 54, 114-122(2015).
[64] Jian Niu, Wenyao Liu, Ziwen Pan, et al. Reducing backscattering and the Kerr noise in a resonant micro-optic gyro using two independent lasers. Applied Optics, 60, 2761-2766(2021).
[65] Shuang Liu, Junyi Hu, Yuxin Wang, et al. Broadband source-driven resonant micro-optic gyroscope based on a multi-turn waveguide-type ring resonator. Optics Letters, 48, 1152-1155(2023).
[66] Chengfeng Xie, Jun Tang, Danfeng Cui, et al. Resonant microsphere gyroscope based on a double Faraday rotator system. Optics Letters, 41, 4783-4786(2016).
[67] Jiang Li, M G Suh, K Vahala. Microresonator Brillouin gyroscope. Optica, 4, 346-348(2017).
[68] S Gundavarapu, G M Brodnik, M Puckett, et al. Sub-hertz fundamental linewidth photonic integrated Brillouin laser. Nature Photonics, 13, 60-67(2018).
[69] Nelson K D, Puckett M W, Wu Jianfeng. A ringlaser gyro based on stimulated Brillouin scattering in silicon nitride waveguides[C]2020 IEEE Research Applications of Photonics in Defense Conference (RAPID), 2020.
[70] Yuhung Lai, M G Suh, Yukun Lu, et al. Earth rotation measured by a chip-scale ring laser gyroscope. Nature Photonics, 14, 345-349(2020).