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Simulation of free-space optical guiding structure based on colliding gas flows

机译:基于碰撞气流的自由空间光导结构的仿真

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Preformed plasma channels with parabolic radial density profiles enable the extended and stable optical guiding of high-intensity laser pulses. High-voltage discharge capillaries, commonly used for channel formation, have limited guiding length and opaque walls, complicating the diagnosis of the plasma within. This paper proposes a free-space gas channel produced by the collision of several gas flows. The collision of the gas flows forms an on-axis density depression surrounded by higher density walls. By offsetting the flows, we demonstrated the creation of what we believe is a novel vortex structure that exhibits a long-lived parabolic density profile. Once ionized, the resulting plasma density profile has a near-parabolic dependence appropriate for guiding. We then performed detailed two-dimensional (2D) fluid dynamics simulations to examine the properties and stability of the guiding structure. (C) 2015 Optical Society of America
机译:具有抛物线形径向密度轮廓的预制等离子体通道可实现对高强度激光脉冲的扩展和稳定的光导。通常用于通道形成的高压放电毛细管的引导长度有限且壁不透明,从而使内部等离子体的诊断变得复杂。本文提出了一种由多种气流碰撞产生的自由空间气体通道。气流的碰撞形成了一个轴上的密度降低区,被高密度的壁包围。通过抵消流量,我们证明了我们所认为的新颖涡流结构的产生,该涡流结构展现了长寿命的抛物线密度分布。一旦电离,所得的等离子体密度分布具有适合于引导的近似抛物线依赖性。然后,我们进行了详细的二维(2D)流体动力学模拟,以检查导向结构的特性和稳定性。 (C)2015年美国眼镜学会

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