FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
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Magneto-optic Crystal Polarization Controller Assisted Mode-Locked Fiber Laser |
ZHAO Guang-Zhen, GUI Li-Li, XIAO Xiao-Sheng, YANG Chang-Xi**
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State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084
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Cite this article: |
ZHAO Guang-Zhen, GUI Li-Li, XIAO Xiao-Sheng et al 2011 Chin. Phys. Lett. 28 034203 |
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Abstract We report a passively mode-locked erbium-doped fiber laser based on a compact magneto-optic crystal polarization controller. The length of the polarization controller consisting of four magneto-optic crystal rotators and two quarter wave-plates is only 10 cm. Adjusting the polarization controller, central wavelength around 1559 nm and repetition rate 21.10 MHz mode-locked pulse are obtained. Pulse duration and 3 dB spectrum width are 598.4 fs and 6.24 nm respectively. Single pulse energy is about 151.7 pJ. Because of its small size, low insertion loss, good controllability and negligible dispersion, the magneto-optic crystal polarization controller could be an ideal polarization controller in fiber lasers.
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Keywords:
42.55.Wd
78.20.Ls
42.60.Fc
42.82.Gw
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Received: 28 September 2010
Published: 28 February 2011
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PACS: |
42.55.Wd
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(Fiber lasers)
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78.20.Ls
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(Magneto-optical effects)
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42.60.Fc
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(Modulation, tuning, and mode locking)
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42.82.Gw
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(Other integrated-optical elements and systems)
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[1] Tamura K, Haus H A and Ippen E P 1992 Electron. Lett. 28 2226
[2] Matsas V J, Richardson D J, Newson T P and Payne D N 1993 Opt. Lett. 18 358
[3] Nakazawa M, Yoshida E, Sugawa T and Kimura Y 1993 Electron. Lett. 29 1327
[4] Noske D U, Pandit N and Taylor J R 1992 Electron. Lett. 28 2185
[5] Tamura K, Nelson L E, Haus H A and Ippen E P 1994 Appl. Phys. Lett. 64 149
[6] Arbel D and Orenstein M 1999 IEEE J. Quantum Electron. 35 977
[7] Salhi M, Leblond H and Sanchez F 2003 Phys. Rev. A 67 013802
[8] Kim A D, Kutz J N and Muraki D J 2000 IEEE J. Quantum Electron. 36 465
[9] Spaulding K M, Yong D H, Kim A D and KutzJ J N 2002 Opt. Soc. Am. B 19 1045
[10] Kelly S M J, Smith K, Blow K J and Doran N J 1991 Opt. Lett. 16 1337
[11] Man W S, Tam H Y, Demokan M S, Wai P K A and Tang D Y 2000 J. Opt. Soc. Am. B 17 28
[12] Aarts W H J and Khoe G D 1989 J. Lightwave Technol. 7 1033
[13] Ikeda K, Takagi T, Hatano T, Kazami H, Mimura Y and Matsuura H 2003 Furukawa Rev. 23 32
[14] Goldring D, Zalevsky Z, Shabtay G, Abraham D and Mendlovic D 2004 J. Opt. A: Pure Appl. Opt. 6 98
[15] Yao X, Yan L and Shi Y 2005 Opt. Lett. 30 1324
[16] Zhang Y, Yang C, S Li, Yan H, Yin J, Gu C and Jin G 2006 Opt. Exp. 14 3484
[17] Zhang S M, Li D, Li X Q and Yang Z J 2007 Proc. SPIE 6825 6825 0Z1
[18] Luo Z C, Luo A P and Xu W C 2010 IEEE Photon. J. 2 571
[19] Michael L, Dennis and Duling Irl N 1994 IEEE J. Quantum Electron. 30 1469
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