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Influence of prepulse plasma formation on neutron production from the laser-target interaction

机译:预脉冲等离子体形成对激光-靶相互作用产生中子产生的影响

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The interaction of an intense ultrashort pulse laser with a planar uniform target was studied with a two-dimensional relativistic electromagnetic particle-in-cell method to determine the acceleration of deuterons and production of neutrons. A Au-CD2 double-layer planar target with thickness of similar to 1 mu m and a preplasma of variable length was used to generate high-energy deuterons as a precursor for neutron production. The deuteron energy and angular distributions and the neutron production from D(d,n)- He-3 nuclear fusion reactions were studied as a function of the preplasma scale length and target thickness. For very thin (submicron) targets the preplasma increases the neutron yield only marginally, but for realistic targets with thickness of a few microns the preplasma enhances the neutron yield by two orders of magnitude. Both the average deuteron energy and neutron yield peak at an optimum preplasma scale length L-P(opt) approximate to 1/k(0) (k(0) laser wave vector), which is of the order of one inverse laser wave vector. (C) 2008 American Institute of Physics.
机译:用二维相对论电磁单元法研究了强超短脉冲激光与平面均匀靶的相互作用,以确定氘核的加速和中子的产生。厚度近似于1μm且长度可变的前质膜的Au-CD2双层平面靶被用来产生高能氘核,作为中子产生的前驱体。研究了氘(D,d,n)-He-3核聚变反应的氘核能量和角度分布以及中子产生与等离子体前标尺长度和目标厚度的关系。对于非常薄(亚微米)的靶子,前等离子体仅略微增加中子产率,但是对于厚度为几微米的实际靶子,前体将中子产率提高两个数量级。平均氘原子能量和中子产量峰值均在最佳等离子体前标度长度L-P(opt)上接近1 / k(0)(k(0)激光波矢量),约为一个反向激光波矢量。 (C)2008美国物理研究所。

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