[1] Paschotta R, Nilsson J, Tropper A C, et al. Ytterbium-doped fiber amplifiers[J]. IEEE Journal of Quantum Electronics, 1997, 33(7): 1049-1056.
[2]
[3]
[4] Tankala K, Carter A, Machewirth D, et al. PM double-clad fibers for high-power lasers and amplifiers[C], 2003: 220-229.
[5]
[6] Limpert J, Liem A, Schreiber T, et al. Power and energy scaling of fiber laser systems based on ytterbium-doped large-mode-area fibers[C]//Durvasula L N ed. Advances in Fiber Lasers, 2003: 135-147.
[7]
[8] Machewirth D, Khitrov V, Manyam U, et al. Large mode area double clad fibers for pulsed and CW lasers and amplifiers[C]//Durvasula L N ed. Fiber Lasers: Technology, Systems, and Applications, 2004: 140-150.
[9]
[10] Dong Z Y, Zou S Z, Han Z H, et al. High power, high energy nanosecond pulsed fiber amplifier with a 20-m-core fiber[J]. Laser Physics, 2011, 21(3): 536-539.
[11]
[12] Krtner F X, Keller U. Stabilization of solitonlike pulses with a slow saturable absorber[J]. Opt Lett, 1995. 20(1): 16-18.
[13] Renninger W H, Chong A, Wise F W. Pulse shaping and evolution in normal-dispersion mode-locked fiber lasers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2012, 18(1): 389-398.
[14]
[15] Song R, Hou J, Chen S, et al. High power supercontinuum generation in a nonlinear ytterbium-doped fiber amplifier[J]. Opt Lett, 2012, 37(9): 1529-1531.
[16]
[17]
[18] Cohen L. Comparison of single-mode fiber dispersion measurement techniques[J]. Journal of Lightwave Technology, 1985, 3(5): 958-966.
[19]
[20] Lee J Y, Kim D Y. Versatile chromatic dispersion measurement of a single mode fiber using spectral white light interferometry[J]. Optics Express, 2006, 14(24): 11608-11615.
[21] Gosteva A, Haiml M, Paschotta R, et al. Noise-related resolution limit of dispersion measurements with white-light interferometers[J]. J Opt Soc Am B, 2005, 22(9): 1868-1874.
[22]
[23] Diddams S, Diels J C. Dispersion measurements with white-light interferometry[J]. JOSA B, 1996, 13(6): 1120-1129.
[24]
[25]
[26] Wolf E, Born M. Principles of Optics[M]. New York: Pergamon Press, 1965.
[27] Liu X, Wang Z, Hou J, et al. Ultra-broadband dispersion measurement of photonic crystal fiber based on supercontinuum pulses[C]//Communications and Photonics Conference and Exhibition (ACP), 2009 Asia, 2009.
[28]
[29] Tateda M, Shibata N, Seikai S. Interferometric method for chromatic dispersion measurement in a single-mode optical fiber[J]. IEEE Journal of Quantum Electronics, 1981, 17(3): 404-407.
[30]
[31] Jin A, Wang Z, Hou J, et al. Experimental measurement and numerical calculation of dispersion of ZBLAN fiber[C]//2011 IEEE International Conference on Electronics and Optoelectronics (ICEOE), 2011.
[32]
[33] Hoh D, Spittel R, Jamer M, et al. Chromatic dispersion measurement of microstructured optical fibers for nonlinear applications[C]//DGaO Proceedings, 2012.