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Excitation of monochromatic and stable electron acoustic wave by two counter-propagating laser beams

机译:两个反向传播的激光束激发单色稳定的电子声波

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摘要

The undamped electron acoustic wave is a newly-observed nonlinear electrostatic plasma wave and has potential applications in ion acceleration, laser amplification and diagnostics due to its unique frequency range. We propose to make the first attempt to excite a monochromatic and stable electron acoustic wave (EAW) by two counter-propagating laser beams. The matching conditions relevant to laser frequencies, plasma density, and electron thermal velocity are derived and the harmonic effects of the EAW are excluded. Single-beam instabilities, including stimulated Raman scattering and stimulated Brillouin scattering, on the excitation process are quantified by an interaction quantity, , where γ is the growth rate of each instability and is the characteristic time of the undamped EAW. The smaller the interaction quantity, the more successfully the monochromatic and stable EAW can be excited. Using one-dimensional Vlasov–Maxwell simulations, we excite EAW wave trains which are amplitude tunable, have a duration of thousands of laser periods, and are monochromatic and stable, by carefully controlling the parameters under the above conditions.
机译:未衰减的电子声波是一种新近观察到的非线性静电等离子体波,由于其独特的频率范围,在离子加速,激光放大和诊断方面具有潜在的应用。我们建议进行首次尝试,通过两个反向传播的激光束激发单色稳定的电子声波(EAW)。得出与激光频率,等离子体密度和电子热速度有关的匹配条件,并且排除了EAW的谐波效应。通过相互作用量来量化激发过程中包括受激拉曼散射和受激布里渊散射的单光束不稳定性,其中γ是每种不稳定性的增长率,是无阻尼EAW的特征时间。相互作用量越小,单色和稳定EAW的激发就越成功。通过使用一维Vlasov-Maxwell模拟,通过在上述条件下仔细控制参数,我们可以激发出EAW波列,它们是振幅可调的,具有数千个激光周期的持续时间,并且是单色且稳定的。

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