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A corner-pumped type is a new pumping type in the diode-pumped solid-state lasers, which has the advantages of high pump efficiency and favorable pump uniformity. Using the single corner-pumped type, an efficient corner-pumped Nd:YAG/YAG composite slab continuous-wave 946 nm laser is demonstrated in this paper. The compact plane-concave linear cavity configuration is adopted and the cavity length is only 20 mm. When the pumping power is 50 W, the maximal output power can reach as high as 5.29 W with an optical-to-optical conversion efficiency of 10.6% and a slope efficiency of 12%. This laser has a compact structure, simple tuning and low cost, which will have a broad application prospect.
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Keywords:
- corner-pumped /
- Nd:YAG crystal /
- continuous-wave /
- 946 nm laser
[1] Gong M, Li C, Liu Q, Chen G, Gong W, Yan P 2004 Appl. Phys. B 79 265
[2] Liu Q, Gong M, Lu F, Gong W, Li C, Ma D 2006 Appl. Phys. Lett. 88 101113
[3] Gong M, Li C, Liu Q, Yan P, Chen G, Zhang H, Cui R 2008 U. S. Patent 7, 388, 895 B2
[4] Gao S, Liu H, Wang D, Gong M 2009 Opt. Express 17 21837
[5] Liu Q, Gong M, Lu F, Gong W, Li C 2005 Opt. Lett. 30 726
[6] Liu Q, Gong M L, Li C, Gong W P, Lu F Y, Chen G 2005 Acta Phys. Sin. 54 721 (in Chinese) [柳强, 巩马理, 李晨, 宫武鹏, 陆富源, 陈刚 2005 54 721]
[7] Chen X Y, Jin G Y, Yu Y J, Liang Z 2009 Acta Opt. Sin. 29 3098 (in Chinese) [陈薪羽, 金光勇, 于永吉, 梁柱 2009光学学报 29 3098]
[8] Hu H, Jiang J F, Lei J, Tang C, Tu B, L W Q, Zhao N, Wu Y C 2010 Chin. J. Lasers 37 30 (in Chinese) [胡浩, 蒋建锋, 雷军, 唐淳, 涂波, 吕文强, 赵娜, 邬映臣 2010 中国激光 37 30]
[9] Yu X, Chen F, Yan R, Li X, Yu J, Zhang Z 2010 Chin. Opt. Lett. 8 499
[10] Liu H, Gong M 2010 Opt. Commun. 283 1062
[11] Liu H, Gong M, Wushouer X, Gao S 2010 Laser Phys. Lett. 7 124
[12] Liu H, Liu Q, Gong M 2010 Opt. Express 18 19603
[13] Fan T Y, Byer R L 1987 IEEE J. Quantum. Electron. 23 605
[14] Goldring A, Abraham M, Bar-Lev A, Epshtein H, Zimmerman Y, Lebiush E, Lavi R 2001 Advanced Solid-State Lasers, OSA Technical Digest Seattle, Washington, USA, 28-31 Jan., 2001 p543
[15] Zhou R, Zhang T L, Li E B, Ding X, Cai Z Q, Zhang B G, Wen W Q, Wang P, Yao J Q 2005 Opt. Express 13 10115
[16] Zhou R, Li E B, Li H F, Wang P, Yao J Q 2006 Opt. Lett. 31 1869
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[1] Gong M, Li C, Liu Q, Chen G, Gong W, Yan P 2004 Appl. Phys. B 79 265
[2] Liu Q, Gong M, Lu F, Gong W, Li C, Ma D 2006 Appl. Phys. Lett. 88 101113
[3] Gong M, Li C, Liu Q, Yan P, Chen G, Zhang H, Cui R 2008 U. S. Patent 7, 388, 895 B2
[4] Gao S, Liu H, Wang D, Gong M 2009 Opt. Express 17 21837
[5] Liu Q, Gong M, Lu F, Gong W, Li C 2005 Opt. Lett. 30 726
[6] Liu Q, Gong M L, Li C, Gong W P, Lu F Y, Chen G 2005 Acta Phys. Sin. 54 721 (in Chinese) [柳强, 巩马理, 李晨, 宫武鹏, 陆富源, 陈刚 2005 54 721]
[7] Chen X Y, Jin G Y, Yu Y J, Liang Z 2009 Acta Opt. Sin. 29 3098 (in Chinese) [陈薪羽, 金光勇, 于永吉, 梁柱 2009光学学报 29 3098]
[8] Hu H, Jiang J F, Lei J, Tang C, Tu B, L W Q, Zhao N, Wu Y C 2010 Chin. J. Lasers 37 30 (in Chinese) [胡浩, 蒋建锋, 雷军, 唐淳, 涂波, 吕文强, 赵娜, 邬映臣 2010 中国激光 37 30]
[9] Yu X, Chen F, Yan R, Li X, Yu J, Zhang Z 2010 Chin. Opt. Lett. 8 499
[10] Liu H, Gong M 2010 Opt. Commun. 283 1062
[11] Liu H, Gong M, Wushouer X, Gao S 2010 Laser Phys. Lett. 7 124
[12] Liu H, Liu Q, Gong M 2010 Opt. Express 18 19603
[13] Fan T Y, Byer R L 1987 IEEE J. Quantum. Electron. 23 605
[14] Goldring A, Abraham M, Bar-Lev A, Epshtein H, Zimmerman Y, Lebiush E, Lavi R 2001 Advanced Solid-State Lasers, OSA Technical Digest Seattle, Washington, USA, 28-31 Jan., 2001 p543
[15] Zhou R, Zhang T L, Li E B, Ding X, Cai Z Q, Zhang B G, Wen W Q, Wang P, Yao J Q 2005 Opt. Express 13 10115
[16] Zhou R, Li E B, Li H F, Wang P, Yao J Q 2006 Opt. Lett. 31 1869
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