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MULTILAYER OPTICS PROVIDES LASER-PLASMA-COUPLING INSIGHT

机译:多层光学器件提供激光-等离子体耦合的洞察力

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The Herpin theorem permits the reflectance of an arbitrary medium to be reproduced with a substrate of one complex refractive index overlaid with a coating him of a second complex refractive index and an appropriate thickness. The reflectances of a variety of laser-plasma-coupling experiments can be matched with a simple and physically meaningful procedure for choosing the fitting parameters. For short-pulse experiments, s-light coupling is dominated by substrate interactions at electron densities above critical and p-light coupling is dominated by resonance at the critical density. The weak dependence of resonance absorption on damping is the result of the harmonic-oscillator resonance form. As the plasma scale length becomes vanishingly small, the reflectance is that of the Fresnel equations, but surprisingly small plasma scale lengths have dramatic effects on the p-light reflectance. Film-substrate and WKB models predict similar resonance absorption, where both models are valid approximations and both should agree with multilayer and Helmholtz wave-optics calculations. For plasma scale lengths well below a wavelength, the film-substrate and the vacuum-heating models are closely related. [References: 30]
机译:赫平定理允许在具有一个复折射率的基底上覆盖第二复折射率和适当厚度的涂层的情况下,再现任意介质的反射率。各种激光-等离子体耦合实验的反射率可以与用于选择拟合参数的简单且物理上有意义的过程相匹配。对于短脉冲实验,在临界点以上的电子密度下,s-光耦合以基质相互作用为主导,在临界密度下,p-光耦合以共振为主导。共振吸收对阻尼的弱依赖性是谐波振荡器共振形式的结果。随着等离子体标度长度逐渐消失,反射率变为菲涅耳方程式的反射率,但是令人惊讶的是,较小的等离子体标度长度对p光反射率具有显着影响。膜-基底和WKB模型预测相似的共振吸收,其中两个模型都是有效的近似值,并且都应与多层和亥姆霍兹波光学计算相符。对于远低于波长的等离子标度长度,薄膜基板和真空加热模型密切相关。 [参考:30]

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