Please wait a minute...
Chin. Phys. B, 2017, Vol. 26(11): 114204    DOI: 10.1088/1674-1056/26/11/114204
ELECTROMAGNETISM, OPTICS, ACOUSTICS, HEAT TRANSFER, CLASSICAL MECHANICS, AND FLUID DYNAMICS Prev   Next  

Low-repetition-rate, all-polarization-maintaining Yb-doped fiber laser mode-locked by a semiconductor saturable absorber

Xiao-Sheng Xiao(肖晓晟)
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China
Abstract  A low-repetition-rate, all-polarization-maintaining (PM)-fiber sub-nanosecond oscillator is presented, which is simple and low-cost, composed of standard components. The ring cavity is elongated by 114-m-long standard PM fiber, and passively mode-locked by a fiber pigtailed semiconductor saturable absorber. Linearly polarized pulses with 1.66 MHz repetition rate and 22 dB polarization extinction ratio are generated at a wavelength of 1030 nm, which is determined by an intracavity filter. In addition, to demonstrate that the oscillator is a good seed for high energy pulse generation, an all-fiber master oscillator power amplifier is built and amplified pulses with energy about 2 μJ are obtained.
Keywords:  mode-locked fiber laser      polarization maintaining      master oscillator power amplifier  
Received:  30 April 2017      Revised:  30 June 2017      Accepted manuscript online: 
PACS:  42.55.Wd (Fiber lasers)  
  42.60.Fc (Modulation, tuning, and mode locking)  
Fund: Project supported by the Initiative Research Program of State Key Laboratory of Precision Measurement Technology and Instruments, China and the National Natural Science Foundation of China (Grant No. 51527901).
Corresponding Authors:  Xiao-Sheng Xiao     E-mail:  xsxiao@tsinghua.edu.cn

Cite this article: 

Xiao-Sheng Xiao(肖晓晟) Low-repetition-rate, all-polarization-maintaining Yb-doped fiber laser mode-locked by a semiconductor saturable absorber 2017 Chin. Phys. B 26 114204

[1] Xu C and Wise F W 2013 Nat. Photon. 7 875
[2] Wise F W, Chong A and Renninger W H 2008 Laser& Photonics Reviews 2 58
[3] Chong A, Buckley J, Renninger W and Wise F W 2006 Opt. Express 14 10095
[4] Zhao L M, Tang D Y and Wu J 2006 Opt. Lett. 31 1788
[5] Xiao X and Hua Y 2016 Opt. Commun. 377 94
[6] Liu X 2009 Opt. Express 17 9549
[7] Grelu P and Akhmediev N 2012 Nat. Photon. 6 84
[8] Chong A, Renninger W H and Wise F W 2008 J. Opt. Soc. Am. B 25 140
[9] Xiao X, Hua Y, Fu B and Yang C 2013 IEEE Photonics Journal 5 1502807
[10] Renninger W H, Chong A and Wise F W 2008 Opt. Lett. 33 3025
[11] Kobtsev S, Kukarin S and Fedotov Y 2008 Opt. Express 16 21936
[12] Kong L J, Xiao X S and Yang C X 2010 Laser Physics Letters 7 359
[13] Kelleher E J R, Travers J C, Sun Z, Rozhin A G, Ferrari A C, Popov S V and Taylor J R 2009 Appl. Phys. Lett. 95 111108
[14] Tian X, Tang M, Shum P P, Gong Y, Lin C, Fu S and Zhang T 2009 Opt. Lett. 34 1432
[15] Noda J, Okamoto K and Sasaki Y 1986 J. Lightwave Technology LT-4 1071
[16] Erkintalo M, Aguergaray C, Runge A and Broderick N G 2012 Opt. Express 20 22669
[17] Zhou J and Gu X 2016 IEEE Photon. Technol. Lett. 28 453
[18] Shen X, Li W and Zeng H 2014 Appl. Phys. Lett. 105 101109
[19] Boivinet S, Lecourt J B, Hernandez Y, Fotiadi A A, Wuilpart M and Mégret P 2014 IEEE Photon. Technol. Lett. 26 2256
[20] Woodward R I, Kelleher E J R, Popa D, Hasan T, Bonaccorso F, Ferrari A C, Popov S V and Taylor J R 2014 IEEE Photon. Technol. Lett. 26 1672
[21] Baumgartl M, Abreu-Afonso J, Díez A, Rothhardt M, Limpert J and Tünnermann A 2013 Appl. Phys. B 111 39
[22] Agrawal G P 2007 Nonlinear Fiber Optics (4th Edn.)(Boston:Academic Press) Chap. 4
[23] Li Y, Xiao X, Kong L and Yang C 2017 IEEE Photonics Journal 9 3900807
[24] Dupriez P, Piper A, Malinowski A, et al. 2006 IEEE Photonics Technology Letters 18 1013
[25] Chen H, Chen S, Wang J, Chen Z and Hou J 2011 Opt. Commun. 284 5484
[1] Suppression of multi-pulse formation in all-polarization-maintaining figure-9 erbium-doped fiber mode-locked laser
Jun-Kai Shi(石俊凯), Deng-Feng Dong(董登峰), Ying-Ling Pan(潘映伶), Guan-Nan Li(李冠楠), Yao Li(黎尧), Li-Tuo Liu(刘立拓), Xiao-Mei Chen(陈晓梅), and Wei-Hu Zhou(周维虎). Chin. Phys. B, 2021, 30(1): 014206.
[2] Systematical analysis of mode-locked fiber lasers using single-walled carbon nanotube saturable absorbers
Zhang Xiao (张晓), Song Yan-Rong (宋晏蓉). Chin. Phys. B, 2014, 23(6): 064204.
[3] Theory of noise in a kilo-Hz cascaded high-energy Yb-doped nanosecond pulsed fiber amplifier
Liu Ming (刘明), Zhang Hai-Tao (张海涛), Gong Ma-Li (巩马理), Zhao Yue-Jin (赵跃进), Cheng Wen-Yong (程文雍), Meng Kuo (孟阔), Zheng Chao (郑超), Chen Yi-Zhu (陈倚竹). Chin. Phys. B, 2014, 23(4): 044214.
[4] Fiber optical parametric oscillator based on photonic crystal fiber pumped with all-normal-dispersion mode-locked Yb:fiber laser
Gou Dou-Dou (苟斗斗), Yang Si-Gang (杨四刚), Zhang Lei (张磊), Wang Xiao-Jian (王小建), Chen Hong-Wei (陈宏伟), Chen Ming-Hua (陈明华), Xie Shi-Zhong (谢世钟), Chen Wei (陈伟), Luo Wen-Yong (罗文勇). Chin. Phys. B, 2014, 23(11): 114204.
[5] Impacts of operational parameters on nonlinear polarization rotation-based passively mode-locked fiber laser
Feng Li-Hui (冯立辉), Zuo Lin (左林), Yang Ai-Ying (杨爱英). Chin. Phys. B, 2013, 22(2): 024208.
[6] Interaction of parabolic-shaped pulse pair in a passively mode-locked Yb-doped fiber laser
Wang Da-Shuai (王大帅), Wu Ge (吴戈), Gao Bo (高博), Tian Xiao-Jian (田小建). Chin. Phys. B, 2013, 22(1): 014207.
[7] Generation of a mid-infrared broadband polarized supercontinuum in As2Se3 photonic crystal fibers
Wang Xiao-Yan(王晓琰), Li Shu-Guang(李曙光), Liu Shuo(刘硕) Yin Guo-Bing(尹国冰), and Li Jian-She(李建设) . Chin. Phys. B, 2012, 21(5): 054220.
[8] 26W near diffraction limited Q-switched green laser based on a diode-end-pumped master oscillator power amplifier
Zhang Ying (张瑛), Hou Wei (侯玮), Yao Ai-Yun (姚爱云), Yang Xiao-Dong (杨晓东), Li Rui-Ning (李瑞宁), Cui Da-Fu (崔大复), Xu Zu-Yan (许祖彦). Chin. Phys. B, 2004, 13(11): 1877-1880.
No Suggested Reading articles found!