Plasma channeling by multiple short-pulse lasers
Wei Yu, L. H. Cao, M. Y. Yu, Hongbo Cai, H. Xu, Xihang Yang, Anle Lei, Kazuo A TANAKA, Ricardo Matsura Kodama
Abstract
Wei Yu, L. H. Cao, M. Y. Yu, Hongbo Cai, H. Xu, Xihang Yang, Anle Lei, Kazuo A TANAKA, Ricardo Matsura Kodama
Abstract
Abstract Channeling by a train of laser pulses into homogeneous and inhomogeneous plasmas is studied using particle-in-cell simulation. When the pulse duration and the interval between the successive pulses are appropriate, the laser pulse train can channel into the plasma deeper than a single long-pulse laser of similar peak intensity and total energy. The increased penetration distance can be attributed to the repeated actions of the ponderomotive force, the continuous between-pulse channel lengthening by the inertially evacuating ions, and the suppression of laser-driven plasma instabilities by the intermittent laser-energy cut-offs.
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Abstract Channeling by a train of laser pulses into homogeneous and inhomogeneous plasmas is studied using particle-in-cell simulation. When the pulse duration and the interval between the successive pulses are appropriate, the laser pulse train can channel into the plasma deeper than a single long-pulse laser of similar peak intensity and total energy. The increased penetration distance can be attributed to the repeated actions of the ponderomotive force, the continuous between-pulse channel lengthening by the inertially evacuating ions, and the suppression of laser-driven plasma instabilities by the intermittent laser-energy cut-offs.
Key concepts: Laser, Plasma, Pulse (music), Ponderomotive force, Pulse duration, Materials science, Atomic physics, Plasma channel