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Electron Acceleration in Wakefield and Supra-Bubble Regimes by Ultraintense Laser with Asymmetric Pulse 被引量:1

Electron Acceleration in Wakefield and Supra-Bubble Regimes by Ultraintense Laser with Asymmetric Pulse
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摘要 Electron acceleration in plasma driven by circular polarized ultraintense laser with asymmetric pulse axe investigated analytically and numerically in terms of oscillation-center Hamiltonian formalism. Studies include wakefield acceleration, which dominates in blow-out or bubble regime and snow-plow acceleration which dominates in supra-bubble regime. By a comparison with each other it is found that snow-plow acceleration has lower acceleration capability. In wakefield acceleration, there exists an obvious optimum pulse asymmetry or/and pulse lengths that leads to the high net energy gain while in snow-plow acceleration it is insensitive to the pulse lengths. Power and linear scaling laws for wakefield and snow-plow acceleration respetively are observed from the net energy gain depending on laser field amplitude. Moreover, there exists also an upper and lower limit on plasma density for an effective acceleration in both of regimes.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第5期883-887,共5页 理论物理通讯(英文版)
基金 Supported by the National Natural Science Foundation of China(NSFC)under Grant Nos.10875015 and 10834008
关键词 laser-plasma acceleration of electrons Hamiltonian mechanics 脉冲强激光 电子加速 非对称 克菲尔 经济制度 等离子体密度 泡沫 脉冲长度
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