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Simulation analysis of the restraining effect of a spatial filter on a hot image

机译:空间滤波器对热图像抑制效果的仿真分析

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摘要

Based on the restraining effect that spatial filtering has on the frequency spectrum of a beam, from the small-scale focusing theory of Bespalov and Talanov (B-T theory) we derive an expression for the pinhole diameter of the spatial filter corresponding to the fastest growing frequency. Then, compared with the theoretical pinhole diameter of the spatial filter, the restraining effect of the spatial filter on a hot image with different pinhole diameters is numerically investigated. The numerical results show that, if the pinhole diameter is larger than the theoretical one, the hot-image intensity will remain steady; once the pinhole diameter becomes smaller than the theoretical one, the hot-image intensity will begin to decrease. Moreover, as the pinhole diameter decreases, a more prominent restraining effect can be obtained. But reducing the diameter of the spatial filter would lead to greater beam energy loss. The parameters of the spatial filter must be chosen to guarantee that the scheme fulfills the demand for low beam energy loss and a satisfactory restraining effect simultaneously.
机译:基于空间滤波对光束频谱的抑制作用,根据Bespalov和Talanov的小规模聚焦理论(BT理论),我们推导出了对应于增长最快频率的空间滤波器针孔直径的表达式。然后,与空间滤波器的理论针孔直径相比,数值研究了空间滤波器对具有不同针孔直径的热图像的抑制效果。数值结果表明,如果针孔直径大于理论值,则热像强度将保持稳定。一旦针孔直径小于理论值,热像强度就会开始降低。此外,随着针孔直径的减小,可以获得更显着的抑制效果。但是减小空间滤波器的直径将导致更大的光束能量损失。必须选择空间滤波器的参数,以确保该方案能够同时满足低波束能量损耗的需求和令人满意的抑制效果。

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