Chinese Journal of Lasers, Volume. 32, Issue 7, 923(2005)
Thermal Effect Research of End-pumped Rectangle Nd∶GdVO4 Crystals
[1] [1] Huaijin Zhang, Xianlin Meng, Junhai Liu et al.. Growth of lowly Nd doped GdVO4 single crystal and its laser properties [J]. J. Crystal Growth, 2000, 216(1~4): 367~371
[2] [2] C. Li, J. Song, D. Shen et al.. Diode-pumped passively Q-switched Nd∶GdVO4 lasers operating at 1.06 μm wavelength [J]. Appl. Phys. B, 2000, 70(4): 471~474
[3] [3] C. Q. Wang, Y. T. Chow, L. Reekie et al.. A comparative study of the laser performance of diode-laser-pumped Nd∶GdVO4 and Nd∶YVO4 crystals [J]. Appl. Phys. B, 2000, 70(6): 769~772
[4] [4] D. Y. Shen, H. R. Yang, J. G. Liu et al.. Efficient and compact intracavity-frequency-doubled Nd∶GdVO4/KTP laser end-pumped by a fiber-coupled laser diode [J]. Appl. Phys. B, 2001, 72(3): 263~266
[5] [5] J. Liu, Z. Shao, H. Zhang et al.. Diode-laser-array end-pump-ed 14.3-W CW Nd∶GdVO4 solid-state laser at 1.06 μm [J]. Appl. Phys. B, 1999, 69(3): 241~243
[6] [6] Junhai Liu, Zongshu Shao, Huaijin Zhang et al.. Diode-laser-array end-pumped intracavity frequency-doubled 3.6 W CW Nd∶GdVO4/KTP green laser [J]. Opt. Commun., 2000, 173: 311~314
[7] [7] Jie Liu, Jimin Yang, Jingliang He. Diode-pumped passively Q-switched intracavity frequency doubled Nd∶GdVO4/KTP green laser [J]. Optics & Laser Technology, 2004, 36(1): 31~33
[8] [8] J. Liu, C. Wang, C. Q. Wang et al.. Diode end-pumped Q-switched high-power intracavity frequency-doubled Nd∶GdVO4/KTP green laser [J]. Appl. Phys. B, 2001, 72(2): 171~174
[9] [9] C. Czeranowsky, M. Schmidt, E. Heumann et al.. Continuous wave diode pumped intracavity doubled Nd∶GdVO4 laser with 840 mW output power at 456 nm [J]. Opt. Commun., 2002, 205: 361~365
[10] [10] Huaijin Zhang, Chenlin Du, Jiyang Wang et al.. Laser performance of Nd∶GdVO4 crystal at 1.34 μm and intracavity double red laser [J]. J. Crystal Growth, 2003, 249(3~4): 492~496
[11] [11] Lianjie Qin, Xianlin Meng, Chenlin Du et al.. LD-pumped actively Q-switched Nd∶GdVO4/KTP red laser [J]. Optics & Laser Technology, 2003, 35(4): 257~260
[14] [14] J. Frauchiger, Peter Albers, Heinz P. Weber. Modeling of thermal lensing and higher order ring mode oscillation in end-pumped CW Nd∶YAG lasers [J]. IEEE J. Quantum Electron., 1992, 28(4): 1046~1056
[15] [15] M. E. Innocenzi, H. T. Yura, C. L. Fincher et al.. Thermal modeling of continuous-wave end-pumped solid-state lasers [J]. Appl. Phys. Lett., 1990, 56(19): 1831~1833
[16] [16] Usamah O. Farrukh, A. Martin Buoncristiani, Charles E. Byvik. An analysis of the temperature distribution in finite solid-state laser rods [J]. IEEE J. Quantum Electron., 1988, 24(11): 2253~2264
[17] [17] Ananada K. Cousins. Temperature and thermal stress scaling in finite-length end-pumped laser rods [J]. IEEE J. Quantum Electron., 1992, 28(4): 1057~1069
[18] [18] Junhai Liu, Chenlin Du, Zhengping Wang et al.. Diode-pumped Q-switched Nd∶GdVO4/KTP green laser formed with a flat flat resonator [J]. Optics & Laser Technology, 2001, 33(3): 177~180
[20] [20] Jintao Bai, Guofu Chen. Continuous-wave diode-laser end-pumped Nd∶YVO4/KTP high-power solid-state green laser [J]. Optic & Laser Technology, 2002, 34(4): 333~336
[22] [22] http:∥www.foctek.com/products/crystals/ndgdvo4.htm,Foctek Photonics, Inc.2004-6-13
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Thermal Effect Research of End-pumped Rectangle Nd∶GdVO4 Crystals[J]. Chinese Journal of Lasers, 2005, 32(7): 923