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基于多通道Kirkpatrick-Baez显微镜的内爆热斑不对称性实验研究 被引量:1
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作者 董建军 邓克立 +3 位作者 王强强 任宽 曹柱荣 江少恩 《核聚变与等离子体物理》 CAS CSCD 北大核心 2018年第2期125-129,共5页
利用多通道Kirkpatrick-Baez显微镜具有约3μm的空间分辨能力,对内爆压缩热斑的细节可以进行空间分辨测量。通过赤道和极区两个正交方向对柱腔辐射驱动内爆热斑的X射线自发射进行测量,获得了热斑区在两个正交方向的二维X射线强度空间分... 利用多通道Kirkpatrick-Baez显微镜具有约3μm的空间分辨能力,对内爆压缩热斑的细节可以进行空间分辨测量。通过赤道和极区两个正交方向对柱腔辐射驱动内爆热斑的X射线自发射进行测量,获得了热斑区在两个正交方向的二维X射线强度空间分布。X射线图像数据处理结果表明,赤道区表征内爆热斑不对称性的2P分量比极区的约高8%,极区的0P分量比赤道区大2μm。内爆热斑在极区的压缩要强于赤道区,反映了极区的辐射驱动要比赤道区的强,这导致靶球在压缩停滞阶段形成的热斑形状呈扁椭球。 展开更多
关键词 Kirkpatrick-Baez显微镜 空间分辨 内爆热斑 热斑不对称性
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Study of the asymmetry of hot-spot self-emission imaging of inertial confinement fusion implosion driven by high-power laser facilities 被引量:1
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作者 Yunsong DONG Dongguo KANG +19 位作者 Wei JIANG Zhicheng LIU Zhongjing CHEN Xing ZHANG Xin LI Chuankui SUN Chuansheng YIN Jianjun DONG Zhiwen YANG Yudong PU Ji YAN Bo YU Tianxuan HUANG Wenyong MIAO Zhensheng DAI Fengjun GE Dong YANG Feng WANG Jiamin YANG Shaoen JIANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第8期20-26,共7页
Implosion asymmetry is a crucial problem quenching ignition in the field of inertial confinement fusion.A forward-calculation method based on 1D and 2D hydrodynamic simulations has been developed to generate and study... Implosion asymmetry is a crucial problem quenching ignition in the field of inertial confinement fusion.A forward-calculation method based on 1D and 2D hydrodynamic simulations has been developed to generate and study the x-ray images of hot-spot self-emission,indicating asymmetry integrated over the entire drive pulse.It is shown that the x-ray imaging photon energy should be higher to avoid the influence of the remaining shell.The contour level(percentage of the maximum emission intensity)and spatial resolution should be as low as possible,optimally less than 20%and 3μm,for characterization of higher-mode signatures such as Ps-P12 by x-ray self-emission images.On the contrary,signatures of lower-mode such as P2 remain clear at all contour levels and spatial resolutions.These key results can help determine the optimal diagnostics,laser,and target parameters for implosion experiments.Recent typical hot-spot asymmetry measurements and applications on the Shenguang 100 kJ class laser facility are also reported. 展开更多
关键词 INERTIAL CONFINEMENT FUSION IMPLOSION x-ray self-emission hot-spot asymmetry
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