• High Power Laser Science and Engineering
  • Vol. 3, Issue 1, 010000e9 (2015)
Xin-ying Jiang, Xiong-wei Yan, Zhen-guo Wang, Jian-gang Zheng, Ming-zhong Li, and and Jing-qin Su
Author Affiliations
  • Research Center of Laser Fusion, CAEP, P.O. Box 919-988, Mianyang 621900, China
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    DOI: 10.1017/hpl.2015.4 Cite this Article Set citation alerts
    Xin-ying Jiang, Xiong-wei Yan, Zhen-guo Wang, Jian-gang Zheng, Ming-zhong Li, and Jing-qin Su. Influence of thermal reduced depolarization on a repetition-frequency laser amplifier and compensation[J]. High Power Laser Science and Engineering, 2015, 3(1): 010000e9 Copy Citation Text show less
    Temperature distribution of Yb:YAG: (a) temperature of 1 cm Yb:YAG; (b) temperature of 2 cm Yb:YAG.
    Fig. 1. Temperature distribution of Yb:YAG: (a) temperature of 1 cm Yb:YAG; (b) temperature of 2 cm Yb:YAG.
    (a) shear stress of Yb:YAG; (b) depolarization of one disk.
    Fig. 2. (a)  shear stress of Yb:YAG; (b) depolarization of one disk.
    (a) Temperature distribution and (b) shear stress of Nd:glass.
    Fig. 3. (a) Temperature distribution and (b)  shear stress of Nd:glass.
    Depolarization of one Md:glass disk.
    Fig. 4. Depolarization of one Md:glass disk.
    Non-uniform pumping distribution measured by CCD.
    Fig. 5. Non-uniform pumping distribution measured by CCD.
    (a) Temperature distribution and (b) shear stress of Yb:YAG with non-uniform pumping.
    Fig. 6. (a) Temperature distribution and (b)  shear stress of Yb:YAG with non-uniform pumping.
    The depolarization of the laser passing through (a) one disk and (b) twenty disks.
    Fig. 7. The depolarization of the laser passing through (a) one disk and (b) twenty disks.
    The residual depolarization caused by light excursion.
    Fig. 8. The residual depolarization caused by light excursion.
    Schematic of depolarization compensation.
    Fig. 9. Schematic of depolarization compensation.
    Xin-ying Jiang, Xiong-wei Yan, Zhen-guo Wang, Jian-gang Zheng, Ming-zhong Li, and Jing-qin Su. Influence of thermal reduced depolarization on a repetition-frequency laser amplifier and compensation[J]. High Power Laser Science and Engineering, 2015, 3(1): 010000e9
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