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All-Fibre Ytterbium-Doped Photonic Crystal Fibre Laser with High Efficiency |
CHEN Wei1,2;LI Jin-Yan1,2;LU Pei-Xiang1;LI Shi-Yu2, JI Ling-Ling1;JIANG Zuo-Wen2;ZHANG Ji-Huang1;PENG Jing-Gang2 |
1Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 4300742National Key Laboratory for Next Generation Fiber Communication Technologies and Networks, Fiberhome Telecommunication Technologies Co. Ltd, Wuhan 430074 |
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Cite this article: |
CHEN Wei, LI Jin-Yan, LU Pei-Xiang et al 2008 Chin. Phys. Lett. 25 960-962 |
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Abstract A double-cladding ytterbium-doped photonic crystal fibre (PCF) with a 350-μm2 effective area is fabricated. The measurement results show that the PCF has high absorption peak at 915nm. Its fluorescence lifetime is 840μs. Laser experiments with all-fibre configurations are carried out with this fibre. A continuous-wave output power of 3.96W is achieved with a 5.2W launched pump power. The central wavelength of the output spectrum is 1080.22nm. The results show that the PCF laser has a high slope efficiency of 79.6% and light conversion efficiency of 76.2%.
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Keywords:
42.55.Wd
42.81.Bm
42.81.Cn
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Received: 03 December 2007
Published: 27 February 2008
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PACS: |
42.55.Wd
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(Fiber lasers)
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42.81.Bm
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(Fabrication, cladding, and splicing)
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42.81.Cn
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(Fiber testing and measurement of fiber parameters)
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[1]Zhou J, Lou Q H and Kong L F 2004 Chin. Phys. Lett. 21 1083 [2] Jeong Y, Nilsson J, Sahu J K, Soh D B, Dupriez P, CodemardC A, Baek S, Payne D N, Horley R, Alvarez-Chavez J A and Turner P W2005 Opt. Lett. 30 955 [3] Hadrich S, Schreiber T, Pertsch T, Limpert J, PeschelT, Eberhardt R and Tunnermann A 2006 Opt. Express 146091 [4] Li M J, Chen X, Wang J, Liu A P, Gray S, Walton D T, BohRuffin A, Demeritt J and Zenteno L 2007 Proc. SPIE 646964690H-1 [5] Jiang Z and Marciante J R 2006 J. Opt. Soc. Am. B 23 2051 [6] Zhao C J, Fan D Y, Peng R W, Tang Z X and Ye Y X 2006 Chin. Phys. Lett. 23 2793 [7] Wang P, Cooper L J, Sahu J K and Clarkson W A 2006 Opt. Lett. 31 226 [8] Hansen K P, Broeng J and Skovgaard P M W 2005 SPIE 5709 273 [9] Wadsworth W J, Knight J C, Reeves W H, Russell P St J andArriaga J 2000 Electron. Lett. 36 1452 [10] Limpert J, Deguil-Robin N, Manek-Honninger I, SalinF, Roser F, Liem A, Schreiber T, Nolte S, Zellmer H,Tunnermann A, Broeng J, Petersson A and Jakobsen C 2005 Opt. Express 13 1055 [11] Chen W, Li J Y, Li S Y, Li H Q, Jiang Z W, and Peng J G,2007 Chin. Opt. Lett. 5 383 [12] Birks T A, Knight J C and Russell P St J 1997 Opt.Lett. 22 961 [13] Dhar A, Ch. Paul M, Pal M, Mondal Kr A, Sen S, Maiti H Sand Sen R 2006 Opt. Express 14 9006 [14] Lavoute L, Roy P, Desfarges-Berthelemot A, Kerm\`{ene Vand F\`{evrier S 2006 Opt. Express 14 2994 [15] Armitage J R, Wyatt R, Ainslie B J and Craig-Ryan S P1989 Electron. Lett. 25 298 [16] Paschotta R, Nilsson J, Barber P R, Caplen J E, Tropper AC and Hanna D C 1997 Opt. Commun. 136 375 |
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