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Second-order hot image from a scatterer in high-power laser systems

机译:大功率激光系统中来自散射体的二阶热图像

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摘要

A theory is developed for predicting a second-order hot-image formation in high-power laser systems. Light diffracted from a small optical scatterer interferes with an intense original wave in the nonlinear medium to produce a hologram like a Fresnel-zone plate. The theoretical model shows that the hologram produces a negative first-order diffractive wave focused to the traditional hot image and negative second-order diffraction that causes another intense image, namely, a second-order hot image. It is found by analysis that the location of the second-order hot image arises in a downstream plane with a half-distance from the medium to the scatterer. Results of the numerical calculations show that the peak intensity of the nonlinear image may reach a level high enough to damage optical components with the increase of the breakup integral (B integral), indicating that the image may also potentially damage expensive optical components in high-power laser systems.
机译:发展了用于预测高功率激光系统中二阶热像形成的理论。来自小型光学散射体的衍射光会干扰非线性介质中的强烈原始波,从而产生像菲涅耳带片的全息图。理论模型表明,全息图产生的负一阶衍射波聚焦到传统的热图像上,而负的二阶衍射则引起另一个强烈的图像,即二阶热图像。通过分析发现,二阶热图像的位置出现在从介质到散射体的距离为一半的下游平面中。数值计算结果表明,随着破裂积分(B积分)的增加,非线性图像的峰值强度可能会达到足以损坏光学组件的水平,这表明该图像还可能潜在地破坏高光谱中昂贵的光学组件。功率激光系统。

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