[1] Polynkin A, Polynkin P, Mansuripur M, et al. Single-frequency fiber ring laser with 1W output power at 1.5m[J]. Optics Express, 2005, 13(8):3179-3184.
[2] Shi W, Petersen E B, Nguyen D T, et al. 220J monolithic single-frequency Q-switched fiber laser at 2m by using highly Tm-doped germanate fibers[J]. Optics Letters, 2011, 36(18):3575-3577.
[3] Bai X, Sheng Q, Zhang H, et al. High-power all-fiber single-frequency Erbium-Ytterbium co-doped fiber master oscillator power amplifier[J]. IEEE Photonics Journal, 2015, 7(6):1-6.
[4] Qi G, Xiong S, Liang X, et al. High-performance and narrow line-width nanosecond pulse laser amplifier for weak signal[J]. Infrared and Laser Engineering, 2015, 44(11):3234-3237.
[5] Zyskind J L, Mizrahi V, DiGiovanni D J, et al. Short single frequency erbium-doped fibre laser[J]. Electronics Letters, 1992, 28(15):1385-1387.
[6] Ball G A, Glenn W H. Design of a single-mode linear-cavity erbium fiber laser utilizing Bragg reflectors[J]. Journal of Lightwave Technology, 1992, 10(10):1338-1343.
[7] Spiegelberg C, Geng J, Hu Y, et al. Compact 100 mW fiber laser with 2 kHz linewidth[C]//Optical Fiber Communication Conference, OSA, 2003, PD45.
[8] Kaneda Y, Spiegelberg C, Geng J, et al. 200-mW, narrow-linewidth 1064.2-nm Yb-doped fiber laser[C]//Conference on Lasers and Electro-Optics, OSA, 2004, CThO3.
[9] Geng J, Wu J, Jiang S, et al. Efficient operation of diode-pumped single-frequency thulium-doped fiber lasers near 2m[J]. Optics Letters, 2007, 32(4):355-357.
[10] Pan Z, Cai H, Meng L, et al. Single-frequency phosphate glass fiber laser with 100-mW output power at 1535 nm and its polarization characteristics[J]. Chinese Optics Letters, 2010, 8(1):52-54.
[11] Xu S H, Yang Z M, Liu T, et al. An efficient compact 300 mW narrow-linewidth single frequency fiber laser at 1.5m[J]. Optics Express, 2010, 18(2):1249-1254.
[12] Xu S, Yang Z, Zhang W, et al. 400 mW ultrashort cavity low-noise single-frequency Yb3+-doped phosphate fiber laser[J]. Optics Letters, 2011, 36(18):3708-3710.
[13] Qi Y, Shanhui X, Can L, et al. A single-frequency linearly polarized fiber laser using a newly developed heavily Tm3+-doped germanate glass fiber at 1.95m[J]. Chinese Physics Letters, 2015, 32(9):094206.
[14] Wang J, Li W. Method of fusion splicing silica fiber with low-temperature multi-component glass fiber:US, 6866429[P]. 2005-03-15.
[15] Li H, Lousteau J, MacPherson W N, et al. Thermal sensitivity of tellurite and germanate optical fibers[J]. Optics Express, 2007, 15(14):8857-8863.
[16] Fang Q, Xu Y, Fu S, et al. Single-frequency distributed Bragg reflector Nd doped silica fiber laser at 930 nm[J]. Optics Letters, 2016, 41(8):1829-1832.
[17] Zhu X, Shi W, Zong J, et al. 976 nm single-frequency distributed Bragg reflector fiber laser[J]. Optics Letters, 2012, 37(20):4167-4169.
[18] Liu Y, Cao J, Xiao H, et al. Study on the output properties of fiber lasers operating near 980 nm[J]. Journal of the Optical Society of America B, 2013, 30(2):266-274.
[19] Shi W, Fang Q, Zhu X, et al. Fiber lasers and their applications[Invited][J]. Applied Optics, 2014, 53(28):6554-6568.
[20] Guan W, Marciante J R. Single-polarization, single-frequency, 2 cm ytterbium-doped fibre laser[J]. Electronics Letters, 2007, 43(10):558-559.
[21] Fang Q, Xu Y, Shijie Fu, et al. Single frequency distributed Bragg reflector Nd-doped silica fiber laser at 930 nm[J].Optics Letters, 2016, 41(8):1829-1832.
[22] Fu S, Shi W, Lin J, et al. Single-frequency fiber laser at 1950 nm based on thulium-doped silica fiber[J]. Optics Letters, 2015, 40(22):5283-5286.
[23] Barmenkov Y O, Zalvidea D, Torres-Peir S, et al. Effective length of short Fabry-Perot cavity formed by uniform fiber Bragg gratings[J]. Optics Express, 2006, 14(14):6394-6399.