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Electron acceleration by tightly focused radially polarized few-cycle laser pulses 被引量:1
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作者 Liu Jin-Lu Sheng Zheng-Ming Zheng Jun 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第2期278-285,共8页
Within the framework of plane-wave angular spectrum analysis of the electromagnetic field structure, a solution valid for tightly focused radially polarized few-cycle laser pulses propagating in vacuum is presented. T... Within the framework of plane-wave angular spectrum analysis of the electromagnetic field structure, a solution valid for tightly focused radially polarized few-cycle laser pulses propagating in vacuum is presented. The resulting field distribution is significantly different from that based on the paraxial approximation for pulses with either small or large beam diameters. We compare the electron accelerations obtained with the two solutions and find that the energy gain obtained with our new solution is usually much larger than that with the paraxial approximation solution. 展开更多
关键词 radially polarized laser pulses few-cycle pulses plane-wave angular spectrum analysis direct laser acceleration of electrons
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Electron Acceleration in Wakefield and Supra-Bubble Regimes by Ultraintense Laser with Asymmetric Pulse 被引量:1
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作者 BAKE Maimaitiaili 谢柏松 +1 位作者 DULAT Sayipjamal AIMIDULA Aimierding 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第5期883-887,共5页
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... 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. 展开更多
关键词 laser-plasma acceleration of electrons Hamiltonian mechanics
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