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Proton Beam Generated by Multi-Lasers Interaction with Rear-Holed Target

Proton Beam Generated by Multi-Lasers Interaction with Rear-Holed Target
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摘要 Multi-lasers are proposed to enhance the proton acceleration in laser plasma interaction. A rear-holed target is illuminated by three lasers from different directions. The scheme is demonstrated by two-dimensional particlein-cell simulations. The electron cloud shape is controlled well and the electron density is improved significantly. The electrons accelerated by the three lasers induce an enhanced target normal sheath acceleration(TNSA) which suppresses the proton beam divergence and improves the maximum proton energy. The maximum proton energy is 22.9 Me V, which increased significantly than that of a single-laser target interaction. Meanwhile, the average divergence angle(22.3?) is reduced. The dependence of the proton beam on the length of sidewall is investigated in detail and the optimal length is obtained.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第3期322-326,共5页 理论物理通讯(英文版)
关键词 PIC simulation proton acceleration rear-holed target multi-lasers 激光等离子体相互作用 质子束 激光器 最大能量 最佳长度 激光照射 模拟演示 形状控制
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