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锥形靶
相关语句
  conical target
     Influence of under-dense plasma on laser conical target interaction
     次稠密等离子体对激光与锥形靶相互作用的影响
短句来源
     The laser light propagation inside the conical target has been studied by three-dimensional particle-in-cell simulations.
     利用三维粒子模拟程序模拟了强激光在锥形靶内的传播情况.
短句来源
  “锥形靶”译为未确定词的双语例句
     Taking into account the thermal-hydraulic and physics discipline,solid target choose sphere structure but liquid target still should further consider of material study .
     锥形靶易于接收中子,但结构易引起应力集中,在综合热工、物理两个角度,固态靶选取圆球型钨靶比较满意,液态靶区的计算需要在材料研究的基础上进行。
短句来源
     The hot electron dose of 15° cone-target was less than foil target.
     15~o锥形靶情况下,测量得到的电子剂量远低于平面靶。
短句来源
     The hot electron number of the cone target was larger than that of the foil target,especially within the range of 2.0~2.5 MeV.The divergence of the forward hot electrons of the cone target was larger than that of the plane one,which was caused by different electron density of the pre-plasma with dissimilar target geometry produced by the driving laser.
     与平面靶情况相比,锥形靶靶背向产生的超热电子数量增加,电子能量为2.0~2.5 MeV的超热电子数目有大幅度增长; 锥形靶背向超热电子的空间发散角大于平面靶,这是由于啁啾脉冲放大激光所固有的较高脉冲前沿产生的预等离子体造成的影响。
短句来源
  相似匹配句对
     Influence of under-dense plasma on laser conical target interaction
     次稠密等离子体对激光与锥形相互作用的影响
短句来源
     A New Type of Photoconductive Target
     新型光导
短句来源
     (7) Target sign;
     (7)征;
短句来源
     The laser light propagation inside the conical target has been studied by three-dimensional particle-in-cell simulations.
     利用三维粒子模拟程序模拟了强激光在锥形内的传播情况.
短句来源
     Application of Cone Flowmeter
     锥形流量计的应用
短句来源
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  conical target
Numerical investigation of deuterium implosion in a conical target
      
Computational Analysis of Non-spherical Implosion Implosion of a non-spherical shell with a conical target is simulated.
      
In Figure 3, a time history of the density contours of the implosion with a conical target is shown.
      
They have proposed using a hollow conical target, which is stuck to the spherical pellet.
      


The laser light propagation inside the conical target has been studied by three-dimensional particle-in-cell simulations. It is found that the existence of under-dense plasma significantly affects the light propagation and the generation of relativistic electrons. The laser light can be focused at the tip of the cone and the intensity increases up to tens of times in the focal spot. With the under-dense plasma the laser light focused intensity is decreased. The existence of under-dense plasmas favors the relativistic...

The laser light propagation inside the conical target has been studied by three-dimensional particle-in-cell simulations. It is found that the existence of under-dense plasma significantly affects the light propagation and the generation of relativistic electrons. The laser light can be focused at the tip of the cone and the intensity increases up to tens of times in the focal spot. With the under-dense plasma the laser light focused intensity is decreased. The existence of under-dense plasmas favors the relativistic electron generation in the laser conical target interaction in enhancing the number and energy of relativistic electrons.

利用三维粒子模拟程序模拟了强激光在锥形靶内的传播情况.发现锥内次稠密等离子体的存在使激光在锥顶部的最大聚焦强度有所降低,产生的相对论电子的最大能量和数目增加.激光在锥壁激发起强的电流和磁场,次稠密的存在还使锥内产生强的准静态磁场,磁场的存在使相对论电子速度分布在垂直激光传播方向上表现出各向同性.

The 30° Au conical target and Au foil target were irradiated by 20 TW ps P-polarized laser plasma,the characteristics of the forward produced hot electrons were studied.The hot electron number of the cone target was larger than that of the foil target,especially within the range of 2.0~2.5 MeV.The divergence of the forward hot electrons of the cone target was larger than that of the plane one,which was caused by different electron density of the pre-plasma with dissimilar target geometry produced by the driving...

The 30° Au conical target and Au foil target were irradiated by 20 TW ps P-polarized laser plasma,the characteristics of the forward produced hot electrons were studied.The hot electron number of the cone target was larger than that of the foil target,especially within the range of 2.0~2.5 MeV.The divergence of the forward hot electrons of the cone target was larger than that of the plane one,which was caused by different electron density of the pre-plasma with dissimilar target geometry produced by the driving laser.

采用20 TW啁啾脉冲放大的ps激光辐照金锥靶和平面靶,对靶背向产生的超热电子角分布和能谱进行了实验研究。结果表明:金锥对超热电子的产生具有重要的影响。与平面靶情况相比,锥形靶靶背向产生的超热电子数量增加,电子能量为2.0~2.5 MeV的超热电子数目有大幅度增长;锥形靶背向超热电子的空间发散角大于平面靶,这是由于啁啾脉冲放大激光所固有的较高脉冲前沿产生的预等离子体造成的影响。

 
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