Atmospheric propagation of high energy lasers

Jonathan Gustafsson, B. Akers, Jonah A. Reeger, Srihari Y. Sritharan
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引用次数: 4

Abstract

High Energy Laser (HEL) propagation through turbulent atmosphere is examined via numerical simulation. The beam propagation is modeled with the paraxial equation, which in turn is written as a system of equations for a quantum fluid, via the Madelung transform. A finite volume solver is applied to the quantum fluid equations, which supports sharp gradients in beam intensity. The atmosphere is modeled via a coupled advection-diffusion equation whose initial data have Kolmogorov spectrum. In this model the combined effects of thermal blooming, beam slewing, and deep turbulence are simulated.
高能激光的大气传播
通过数值模拟研究了高能激光在湍流大气中的传输。光束的传播用傍轴方程建模,而傍轴方程又通过马德隆变换写成量子流体的方程组。将有限体积求解器应用于量子流体方程,该方程支持光束强度的急剧梯度。大气模型采用平流-扩散耦合方程,其初始数据具有柯尔莫哥洛夫谱。在该模型中,模拟了热晕、光束旋转和深度湍流的综合效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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