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等离子体中碰撞激光场中电子的随机加热与加速

Stochastic heating and acceleration of electrons in colliding laser fields in plasma.

作者信息

Sheng Z-M, Mima K, Sentoku Y, Jovanović M S, Taguchi T, Zhang J, Meyer-Ter-Vehn J

机构信息

Institute of Laser Engineering, Osaka University, 2-6 Yamada-oka, Suita, Osaka 565-0871, Japan.

出版信息

Phys Rev Lett. 2002 Feb 4;88(5):055004. doi: 10.1103/PhysRevLett.88.055004. Epub 2002 Jan 18.

Abstract

We propose a mechanism that leads to efficient acceleration of electrons in plasma by two counterpropagating laser pulses. It is triggered by stochastic motion of electrons when the laser fields exceed some threshold amplitudes, as found in single-electron dynamics. It is further confirmed in particle-in-cell simulations. In vacuum or tenuous plasma, electron acceleration in the case with two colliding laser pulses can be much more efficient than with one laser pulse only. In plasma at moderate densities, such as a few percent of the critical density, the amplitude of the Raman-backscattered wave is high enough to serve as the second counterpropagating pulse to trigger the electron stochastic motion. As a result, even with one intense laser pulse only, electrons can be heated up to a temperature much higher than the corresponding laser ponderomotive potential.

摘要

我们提出了一种机制,通过两个反向传播的激光脉冲在等离子体中实现电子的高效加速。当激光场超过某些阈值幅度时,它由电子的随机运动触发,这在单电子动力学中已被发现。这在粒子模拟中得到了进一步证实。在真空或稀薄等离子体中,两个碰撞激光脉冲情况下的电子加速比仅使用一个激光脉冲时要高效得多。在中等密度的等离子体中,例如临界密度的百分之几,拉曼背向散射波的幅度足够高,可作为第二个反向传播脉冲来触发电子的随机运动。结果,即使仅使用一个强激光脉冲,电子也能被加热到远高于相应激光有质动力势的温度。

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