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中国物理学会期刊

神光Ⅱ装置x射线辐射在低密度CH泡沫中的超声速传播实验研究

CSTR: 32037.14.aps.53.3413

Experimental investigation of supersonic x-ray transport in radiatively heated CH foam cylinders on ShenguangⅡ facilities

CSTR: 32037.14.aps.53.3413
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  • 在“神光Ⅱ”的三倍频装置上进行实验,利用北四路激光注入半腔靶后接不同密度、不同厚度的CH(C66H12,聚4甲基1戊烯)发泡材料,研究x射线辐射在低密度CH泡沫中的超声速传播问题,对x射线辐射的多个能点(80,250和400eV)的传播时间、传播速度、输运管壁收缩过程、时间能谱和辐射温度等进行了测量,获得了10倍的超声速传输的速度,并采用辐射输运“漏水管模型”对实验结果进行了简要分析,结果基本相符 .

     

    Supersonic radiation transport, where the ratio of the radiation wave front velocity to the material sound speed was more than 10, has been investigated experimentally in the low-density foam. Four beams of 0.35μm laser with pulse d uration of 1ns and 2kJ of total energy entered into a hohlraum to create intense x-ray radiation that heated C66H12 

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