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Maxwell-Schrdinger-Plasma (MASP) model for laser-molecule interactions: Towards an understanding of filamentation with intense ultrashort pulses

机译:用于激光-分子相互作用的Maxwell-Schrdinger-Plasma(MASP)模型:通过强超短脉冲了解丝化

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We develop in this paper a method for the simulation of intense ultrashort electromagnetic fields propagating in a molecular gas. The electromagnetic field (laser pulse) is modeled using Maxwell's equations coupled with many time dependent quantum Schrdinger equations modeling the molecular gas thus including an ab initio description of the laser-molecule interaction. This Maxwell-Schrdinger-Plasma, MASP, model allows us to include high harmonics, self-focusing and self-defocusing nonlinearities. At the intensities, we consider that the gas is partially ionized leading to the creation of a free electron plasma which contributes to the pulse defocusing. We then present a series of numerical simulations showing the behavior of the MASP model depending on the gas density, and initial laser intensity. In particular, self-focusing and self-defocusing effects as well as filament-like behaviors are presented and discussed. A scaling theory is developed for large propagations.
机译:我们在本文中开发了一种用于模拟在分子气体中传播的强超短电磁场的方法。电磁场(激光脉冲)是使用麦克斯韦方程组和许多与时间相关的量子薛定equation方程组建模的,该方程对分子气体进行建模,因此从头开始描述了激光-分子相互作用。这个Maxwell-Schrdinger-Plasma MASP模型允许我们包括高次谐波,自聚焦和自散焦非线性。在该强度下,我们认为气体被部分离子化,从而导致形成了自由电子等离子体,该自由电子等离子体有助于脉冲散焦。然后,我们提出了一系列数值模拟,显示了MASP模型的行为,具体取决于气体密度和初始激光强度。特别是,提出并讨论了自聚焦和自散焦效果以及细丝状行为。缩放理论被开发用于大传播。

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