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NUMERICAL SIMULATION AND SCALING LAW OF ABSORPTION OF GOLD DISK TARGETS IRRADIATED BY 1.05 AND 0.53μm LASER

LIU SHEN-YE FU LI-BIN ZHANG HAI-YING DING YAO-NAN LIU ZHONG-LI ZHENG ZHI-JIAN TANG DAO-YUAN CHEN HAN-DE

NUMERICAL SIMULATION AND SCALING LAW OF ABSORPTION OF GOLD DISK TARGETS IRRADIATED BY 1.05 AND 0.53μm LASER

LIU SHEN-YE, FU LI-BIN, ZHANG HAI-YING, DING YAO-NAN, LIU ZHONG-LI, ZHENG ZHI-JIAN, TANG DAO-YUAN, CHEN HAN-DE
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  • Received Date:  11 July 1994
  • Published Online:  05 January 1996

NUMERICAL SIMULATION AND SCALING LAW OF ABSORPTION OF GOLD DISK TARGETS IRRADIATED BY 1.05 AND 0.53μm LASER

  • 1. 西南核物理与化学研究所,成都610003

Abstract: Au disk targets were irradiated with -0.8 ns, 1.05 and 0.53 μm laser. The intensity and angular dependence of absorption were studied experimentally. The experimental results of absorption by laser-produced plasma are introduced in this paper. The measured absorption with plasma calorimeters accord with one-dimension planar simulation. The experiment and theory show that collision absorption is the main absorption mechanism. A scaling law of absorption has been suggested based on the careful analysis of the experimental results.

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