Chinese Journal of Lasers, Volume. 49, Issue 21, 2101002(2022)
Thermal Effect of Side-Zigzag-Pumped Polygonal Nd∶YAG Thin Disk
[1] Yasuhara R, Kawashima T, Sekine T et al. 213 W average power of 2.4 GW pulsed thermally controlled Nd: glass zigzag slab laser with a stimulated Brillouin scattering mirror[J]. Optics Letters, 33, 1711-1713(2008).
[2] Coyle D B, Stysley P R, Poulios D et al. High efficiency, 100 mJ per pulse, Nd∶YAG oscillator optimized for space-based earth and planetary remote sensing[J]. Optics & Laser Technology, 63, 13-18(2014).
[3] Fu X, Liu T H, Lei X X et al. High energy diode-pumped rep-rated nanosecond solid-state laser[J]. Chinese Journal of Lasers, 48, 1501003(2021).
[4] Fan Z W, Qiu J S, Kang Z J et al. High beam quality 5 J, 200 Hz Nd∶YAG laser system[J]. Light: Science & Applications, 6, e17004(2017).
[5] Yi J Y, Tu B, Cao H X et al. Design and experiment on high-power direct-liquid-cooled thin-disk solid-state laser[J]. Chinese Journal of Lasers, 45, 1201004(2018).
[6] Jiang L, Liu J, Yuan X R et al. Cooling techniques for deformation reduction of thin-disk lasers[J]. Chinese Journal of Lasers, 48, 0301001(2021).
[7] Yang H M, Feng G Y, Wei Y T et al. Study on temperature distribution of disk-type laser based on heat-fluid-solid Multiphysics coupling method[J]. Chinese Journal of Lasers, 40, 0902004(2013).
[8] Lavi R, Jackel S, Tal A et al. 885 nm high-power diodes end-pumped Nd∶YAG laser[J]. Optics Communications, 195, 427-430(2001).
[9] Goldring S, Lavi R. Nd∶YAG laser pumped at 946 nm[J]. Optics Letters, 33, 669-671(2008).
[10] Deng W P, Yang T, Cao J P et al. High-efficiency 1064 nm nonplanar ring oscillator Nd∶YAG laser with diode pumping at 885 nm[J]. Optics Letters, 43, 1562-1565(2018).
[11] Eggleston J M, Frantz L M, Injeyan H. Deviation of the Frantz-Nodvik equation for zig-zag optical path, slab geometry laser amplifiers[J]. IEEE Journal of Quantum Electronics, 25, 1855-1862(1989).
[12] Giesen A, Hügel H, Voss A et al. Scalable concept for diode-pumped high-power solid-state lasers[J]. Applied Physics B, 58, 365-372(1994).
[13] Stewen C, Contag K, Larionov M et al. A 1-kW CW thin disc laser[J]. IEEE Journal of Selected Topics in Quantum Electronics, 6, 650-657(2000).
[14] Vetrovec J. Ultrahigh-average-power solid state laser[J]. Proceedings of SPIE, 4760, 491-505(2002).
[15] Liu Q, Gong M L, Pan Y Y et al. Edge-pumped composite thin-disc Yb∶YAG/YAG laser: design and power scaling[J]. Acta Physica Sinica, 53, 2159-2164(2004).
[16] Liu Q, Fu X, Ma D et al. Edge-pumped asymmetric Yb∶YAG/YAG thin disk laser[J]. Laser Physics Letters, 4, 719-721(2007).
[17] Aminpour H, Pflaum C. Optical path difference of slanted edge diode-pumped Yb∶YAG/YAG thin-disk laser[J]. Proceedings of SPIE, 8959, 308-316(2014).
[18] Grigore O V, Croitoru G, Dascalu T et al. Diode-laser edge-pumped Nd∶YAG/YAG lens-shaped composite laser[J]. Optics & Laser Technology, 94, 86-89(2017).
[19] Liu Q, Gong M L, Yan P et al. Edge-pumped thin-disc Nd∶YAG lasers[J]. Chinese Journal of Lasers, 31, 35-37(2004).
[20] Feng C, Guo W R, Li Q. Experimental study of thermal effect on large size Nd∶YAG side pumped thin disk laser[J]. Applied Laser, 31, 414-417(2011).
[21] Koechner W[M]. Solid-State Laser Engineering(2006).
[22] Feng G Y, Zhou S H. Discussion of comprehensive evaluation on laser beam quality[J]. Chinese Journal of Lasers, 36, 1643-1653(2009).
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Qiao Chen, Wenqi Ge, Shengwei Bian, Tianqi Wang, Jisi Qiu. Thermal Effect of Side-Zigzag-Pumped Polygonal Nd∶YAG Thin Disk[J]. Chinese Journal of Lasers, 2022, 49(21): 2101002
Category: laser devices and laser physics
Received: Jan. 7, 2022
Accepted: Mar. 2, 2022
Published Online: Oct. 14, 2022
The Author Email: Qiu Jisi (keith0311@163.com)