• Acta Optica Sinica
  • Vol. 36, Issue 11, 1114001 (2016)
Chen Jiupeng1、2、*, Gao Jing1, Jiao Dongdong1, Bai Weikai1、2, Deng Xue1, Liu Jie1、2, Xu Guanjun1, Dong Ruifang1, Liu Tao1, and Zhang Shougang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/aos201636.1114001 Cite this Article Set citation alerts
    Chen Jiupeng, Gao Jing, Jiao Dongdong, Bai Weikai, Deng Xue, Liu Jie, Xu Guanjun, Dong Ruifang, Liu Tao, Zhang Shougang. Laser Linewidth Measurement Based on System Parameters Insensitive Recirculating Delayed Self-Heterodyne Interferometer[J]. Acta Optica Sinica, 2016, 36(11): 1114001 Copy Citation Text show less
    References

    [1] Huang Changqing, Liu Mengshi, Che Tengyun, et al. Output characteristics of Brillouin-erbium random fiber laser[J]. Acta Photonica Sinica, 2016, 45(3): 0314001.

    [2] Peng Yu, Liu Pengfei, Li Wei. Bad-cavity Raman laser based on lattice-trapped cesium atoms[J]. Laser & Optoelectronics Progress, 2016, 53(4): 041402.

    [3] Wei Kaihua, Chen Qingguang, Wen Ruhua, et al. High power linearly polarized Yb fiber laser with picosecond pulse bunch output[J]. Acta Photonica Sinica, 2016, 45(4): 0414002.

    [4] Ye Bin, Dai Shixun, Liu Zijun, et al. Research progress of Er3+: ZBLAN fiber laser operating at 2.7 μm[J]. Laser & Optoelectronics Progress, 2015, 52(9): 090004.

    [5] Jiang H F. Development of ultra-stable laser sources and long-distance optical link via telecommunication networks[D]. Pairs: University Pairs XIII, 2010.

    [6] Nawrodt R, Rowan S, Hough J, et al. Challenges in thermal noise for 3rd generation of gravitational wave detectors[J]. General Relativity & Gravitation, 2011, 43(2): 593-622.

    [7] Rafac R J, Young B C, Beall J A, et al. Sub-dekahertz ultraviolet spectroscopy of 199Hg+[J]. Physical Review Letters, 2000, 85(12): 2462-2465.

    [8] Bufton J L, Garvin J B, Cavanaugh J F, et al. Airborne lidar for profiling of surface topography[J]. Optical Engineering, 1991, 30(1): 72-78.

    [9] Okoshi T, Kikuchi K, Nakayama A. Novel method for high resolution measurement of laser output spectrum[J]. Electronics Letters, 1980, 16(16): 630-631.

    [10] Tsuchida H. Simple technique for improving the resolution of the delayed self-heterodyne method[J]. Optics Letters, 1990, 15(11): 640-642.

    [11] Dawson J W, Park N, Vahala K J. An improved delayed self-heterodyne interferometer for linewidth measurements[J]. IEEE Photonics Technology Letters, 1992, 4(9): 1063-1066.

    [12] Han M, Wang A. Analysis of a loss-compensated recirculating delayed self-heterodyne interferometer for laser linewidth measurement[J]. Applied Physics B, 2005, 81(1): 53-58.

    [13] Chen X P, Han M, Zhu Y Z, et al. Implementation of a loss-compensated recirculating delayed self-heterodyne interferometer for ultranarrow laser linewidth measurement[J]. Applied Optics, 2006, 45(29): 7712-7717.

    [14] Murakami M, Saito S. Evolution of field spectrum due to fiber-nonlinearity-induced phase noise in in-line optical amplifier systems[J]. IEEE Photonics Technology Letters, 1992, 4(11): 1269-1272.

    [15] Thompson W J. Numerous neat algorithms for the Voigt profile function[J]. Computers in Physics, 1993, 7(6): 627-631.

    [16] Weideman J A C. Computation of the complex error function[J]. Siam Journal on Numerical Analysis, 1994, 31(5): 1497-1518.

    Chen Jiupeng, Gao Jing, Jiao Dongdong, Bai Weikai, Deng Xue, Liu Jie, Xu Guanjun, Dong Ruifang, Liu Tao, Zhang Shougang. Laser Linewidth Measurement Based on System Parameters Insensitive Recirculating Delayed Self-Heterodyne Interferometer[J]. Acta Optica Sinica, 2016, 36(11): 1114001
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