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Generation of Plasma Fields in the Interaction between Two Oppositely Propagating Short Laser Pulses in an Underdense Plasma

机译:在稀疏等离子体中两个相对传播的短激光脉冲之间相互作用中产生的等离子体场

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摘要

A study is made of the interaction ("collision") between two identical laser pulses with lengths much shorter than the diffraction length, propagating in a plasma toward one another. It is shown that the plasma response to the pulses depends essentially on the value of the parameter ω_pτ, where ω_p is the plasma frequency and τ is the pulse duration. Short laser pulses (such that ω_pτ <= 2~(1/2)) efficiently generate plasma waves on two characteristics scale lengths. Large-scale wake waves with a wavelength of about c/ω_p are generated over the entire path of the pulses and form a two-dimensional standing plasma wave in the region between the pulses after their interaction. In the interaction region, the pulses excite small-scale plasma oscillations with a wave-length equal to half the laser wavelength, which remain in the plasma after the interaction. Long laser pulses (such that ω_pτ > 2~(1/2)) also generate quasistatic plasma perturbations on two scale lengths. Perturbations generated on large sales of about the pulse length accompany the propagating pulses and are somewhat amplified in the interaction between them. Small-scale plasma fields are generated only during the interaction between the pulses, and they disappear after the interaction. The influence of the generation of plasma fields on the energy of the laser pulses and on their shape, as well as the possible applications of the effects under consideration, is discussed.
机译:研究了两个相同的激光脉冲之间的相互作用(“碰撞”),其长度比衍射长度短得多,并且在等离子体中彼此传播。结果表明,等离子体对脉冲的响应主要取决于参数ω_pτ的值,其中ω_p是等离子体频率,τ是脉冲持续时间。短的激光脉冲(使ω_pτ<= 2〜(1/2))有效地产生两个特征尺度长度的等离子体波。波长约为c /ω_p的大规模尾波在脉冲的整个路径上生成,并在它们相互作用之后在脉冲之间的区域中形成二维驻极体等离子体波。在相互作用区域中,脉冲激发波长等于激光波长一半的小规模等离子体振荡,该振荡在相互作用后保留在等离子体中。长的激光脉冲(使得ω_pτ> 2〜(1/2))也会在两个尺度长度上产生准静态等离子体扰动。大批量出售时产生的扰动(大约为脉冲长度)伴随着正在传播的脉冲,并在它们之间的相互作用中有所放大。小规模的等离子体场仅在脉冲之间的相互作用期间生成,并且在相互作用之后消失。讨论了等离子体场的产生对激光脉冲能量及其形状的影响,以及所考虑效应的可能应用。

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