Chin. Phys. Lett.  2012, Vol. 29 Issue (8): 084205    DOI: 10.1088/0256-307X/29/8/084205
FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
A Compact Low Noise Single Frequency Linearly Polarized DBR Fiber Laser at 1550 nm
ZHANG Wei-Nan, LI Can, MO Shu-Pei, YANG Chang-Sheng, FENG Zhou-Ming, XU Shan-Hui**, SHEN Shao-Xiong, PENG Ming-Ying, ZHANG Qin-Yuan, YANG Zhong-Min**
State Key Laboratory Luminescent Materials and Devices and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510640
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Abstract A compact low noise single frequency linearly polarized distributed Bragg reflector (DBR) fiber laser based on a 1.4-cm-long homemade Er3+/Yb3+-codoped phosphate single mode glass fiber has been demonstrated. An over 50 mW stable single frequency linearly polarized fiber laser was achieved. The measured slope efficiency is more than 21.6%, and the signal-to-noise ratio (SNR) is higher than 65 dB and the laser linewidth is less than 2.0 kHz. The laser RIN is measured to be less than ?150 dB/Hz at the frequencies over 2.0 MHz, and the obtained linear polarization extinction ratio (LPER) is more than 30 dB.
Received: 22 May 2012      Published: 31 July 2012
PACS:  42.55.Wd (Fiber lasers)  
  42.81.Gs (Birefringence, polarization)  
  42.79.-e (Optical elements, devices, and systems)  
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https://cpl.iphy.ac.cn/10.1088/0256-307X/29/8/084205       OR      https://cpl.iphy.ac.cn/Y2012/V29/I8/084205
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[1] Ball G A, Morey W W and Glenn W H 1991 IEEE Photon. Technol. Lett. 3 613
[2] Spiegelberg C, Geng J, Hu Y, Kaneda Y, Jiang S and Peyghambarian N 2004 J. Lightwave Technol. 22 57
[3] Qiu T, Suzuki S, Schulzgen A, Li L, Polynkin A, Temyanko V, Moloney J V and Peyghambarian N 2005 Opt. Lett. 30 2748
[4] Perez-Herrera R A, Chen S, Zhao W, Sun T, Grattan K and Lopez-Amo M 2010 Opt. Commun. 283 1067
[5] Paramonov V M, Kurkov A S, Medvedkov O I and Tsvetkov V B 2007 Laser Phys. Lett. 4 740
[6] Jin T L and William A G 1991 Proc. SPIE 1373 42
[7] Harutjunian Z E, Loh W H, Laming R I and Payne D N 1996 Electron. Lett. 32 346
[8] Storoy H, Sahlgren B and Stubbe R 1997 Electron. Lett. 33 56
[9] Fu L B, Ibsen M, Turner P W, Richardson D J and Payne D N 2002 Electron. Lett. 38 1537
[10] Dong L, Loh W H, Caplen J E, Minelly J D, Hsu K and Reekie L 1997 Opt. Lett. 22 694
[11] Babin S A, Churkin D V, Ismagulov A E, Kablukov S I and Nikulin M A 2007 Laser Phys. Lett. 4 428
[12] Yamashita S and Cowle G J 1999 J. Lightwave Technol. 17 509
[13] Li X H, Liu X M, Gong Y K, Sun H B, Wang L R and Lu K Q 2010 Laser Phys. Lett. 7 55
[14] Xu S H, Yang Z M, Liu T, Zhang W N, Feng Z M, Zhang Q Y and Jiang Z H 2010 Opt. Express 18 1249
[15] Xu S H, Yang Z M, Zhang W N, Wei X M, Qian Q, Chen D D, Zhang Q Y, Shen S X, Peng M Y and Qiu J R 2011 Opt. Lett. 36 3708
[16] Xu S H, Yang Z M, Zhang Q Y, Li Z, Deng Z D and Xu W C 2007 Chin. Phys. Lett. 24 1955
[17] Xu S H, Yang Z M, Feng Z M, Zhang Q Y, Jiang Z H, Xu W C 2009 Chin. Phys. Lett. 26 047806
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