论文标题

激光驱动的血浆密度光栅的生长,饱和度和崩溃

Growth, saturation and collapse of laser-driven plasma density gratings

论文作者

Ma, H. H., Weng, S. M., Li, P., Li, X. F., Wang, Y. X., Yew, S. H., Chen, M., McKenna, P., Sheng, Z. M.

论文摘要

通过相交的激光脉冲诱导的血浆密度光栅可以用作光学压缩机,极化器,波动板和光子晶体,以操纵超高功率激光脉冲。但是,血浆密度光栅的形成和演变仍未完全理解,因为通常采用线性模型来描述它们。在本文中,提出了两个非线性理论模型,以研究血浆密度光栅的形成过程。在第一个模型中,提出了基于流体方程的非线性分析解决方案,而在第二个模型中,采用了粒子网方法来研究动力学效应。发现这两种模型都可以在不同阶段描述等离子体密度的光栅形成,远远超出了线性生长阶段。更重要的是,第二个模型可以重现等离子体密度光栅“离子波破坏”的现象,该现象最终诱导血浆密度光栅的饱和度。使用第二个模型,获得血浆密度光栅的饱和时间是激光强度和等离子体密度的函数,可用于估计实验中血浆密度光栅的寿命。使用粒子中的粒子模拟验证了这两个非线性模型的结果。

The plasma density grating induced by intersecting intense laser pulses can be utilized as an optical compressors, polarizers, waveplates and photonic crystals for the manipulation of ultra-high-power laser pulses. However, the formation and evolution of the plasma density grating are still not fully understood as linear models are adopted to describe them usually. In this paper, two nonlinear theoretical models are presented to study the formation process of the plasma density grating. In the first model, a nonlinear analytical solution based on the fluid equations is presented while in the second model a particle-mesh method is adopted to investigate the kinetic effects. It is found that both models can describe the plasma density grating formation at different stages, well beyond the linear growth stage. More importantly, the second model can reproduce the phenomenon of "ion wave-breaking" of plasma density grating, which eventually induces the saturation of plasma density grating. Using the second model, the saturation time of the plasma density grating is obtained as a function of laser intensity and plasma density, which can be applied to estimate the lifetime of the plasma density grating in experiments. The results from these two nonlinear models are verified using particle-in-cell simulations.

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