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首页> 外文期刊>Journal of Applied Physics >Fractional Fresnel coefficients for optical absorption in femtosecond laser-induced rough metal surfaces
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Fractional Fresnel coefficients for optical absorption in femtosecond laser-induced rough metal surfaces

机译:飞秒激光诱导的粗糙金属表面中光吸收的分数菲涅耳系数

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摘要

The surface morphology of metal influences its optical absorptivity. Recent experiments have demonstrated that the femtosecond laser induced surface structures on metals could be dynamically controlled by the fluence of laser and the number of pulses. In this paper, we formulate an analytical model to calculate the optical absorption of a rough metallic surface by modeling the roughness as a fractal slab. For a given experimental image of the surface roughness, we characterize the roughness with a fractal parameter by using the box-counting method. With this parameter as an input, we calculate the absorption of an 800 nm laser pulse impinging on gold, copper, and platinum, and the calculated results show excellent agreements. In terms of physics, our model can be viewed as a fractional version of the Fresnel coefficients, and it will be useful for designing suitable surface structures to tune the light absorption on metals from purely reflective to highly absorptive based on different applications. Published by AIP Publishing.
机译:金属的表面形态会影响其光学吸收率。最近的实验表明,飞秒激光诱导的金属表面结构可以通过激光的能量密度和脉冲数来动态控制。在本文中,我们建立了一个分析模型,通过将粗糙度建模为分形平板来计算粗糙金属表面的光吸收。对于给定的表面粗糙度的实验图像,我们使用盒计数法通过分形参数来表征粗糙度。以该参数为输入,我们计算了撞击到金,铜和铂上的800 nm激光脉冲的吸收,并且计算结果显示出极好的一致性。在物理方面,我们的模型可以看作是菲涅耳系数的分数形式,对于设计合适的表面结构以根据不同的应用将金属上的光吸收从纯反射率转换为高吸收率将非常有用。由AIP Publishing发布。

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