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首页> 外文期刊>Physics of plasmas >Generation of periodic ultrashort electron bunches and strongly asymmetric ion Coulomb explosion in nanometer foils interacting with ultra-intense laser pulse
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Generation of periodic ultrashort electron bunches and strongly asymmetric ion Coulomb explosion in nanometer foils interacting with ultra-intense laser pulse

机译:与超强激光脉冲相互作用的纳米箔中周期性超短电子束的产生和强不对称离子库仑爆炸

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摘要

The interaction of a linearly polarized intense laser pulse with an ultrathin nanometer plasma layer is investigated to understand the physics of the ion acceleration. It is shown by the computer simulation that the plasma response to the laser pulse comprises two steps. First, due to the vxB effect, electrons in the plasma layer are extracted and periodic ultrashort relativistic electron bunches are generated every half of a laser period. Second, strongly asymmetric Coulomb explosion of ions in the foil occurs due to the strong electrostatic charge separation, once the foil is burnt through. Followed by the laser accelerated electron bunch, the ion expansion in the forward direction occurs along the laser beam that is much stronger as compared to the backward direction. (c) 2008 American Institute of Physics.
机译:研究了线偏振强激光脉冲与超薄纳米等离子体层的相互作用,以了解离子加速的物理原理。计算机仿真表明,等离子体对激光脉冲的响应包括两个步骤。首先,由于vxB效应,等离子体层中的电子被提取,并且每半个激光周期产生周期性的超短相对论电子束。其次,一旦箔被烧穿,由于强的静电电荷分离,箔中的离子会发生强烈的不对称库仑爆炸。跟随激光加速的电子束,沿着激光束在向前方向发生离子膨胀,该离子束比向后方向的强得多。 (c)2008年美国物理研究所。

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