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High speed fabrication of periodical nanostructures by fs-laser direct writing on surfaces and in the volume of transparent materials

机译:FS激光直接写入表面和透明材料体积的高速制备期周期纳米结构

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Using fs-laser direct writing periodical surface nanostructures are fabricated on the surface of dielectric materials. By using high repetition rate fs-laser radiation with a wavelength of 1045 nm periodical nanostructures with periods of 200-350 nm are obtained on dielectrics. In this paper the pump-probe technique is used for time-resolved investigations of the spectral reflectivity and transmittivity during and up to 1 ns after the fs-laser pulse. From this measurements the transient electron density in the conduction band and the transient dielectric function are calculated and used to extend the classical ripples theory with the transiently modified dielectric function. The periods of the surface nanostructures are compared to the calculations and discussed.
机译:使用FS-激光直接写入期间表面纳米结构在介电材料的表面上制造。通过使用具有1045nm的波长的高重复率Fs-激光辐射,在电介质上获得200-350nm的周期的周期性纳米结构。在本文中,泵探针技术用于在FS激光脉冲之后和最多1ns期间和最多1ns的光谱反射率和透射率的时间分辨调查。从该测量,计算传导带中的瞬态电子密度和瞬态介电函数,并用来利用瞬态修改的介质功能延伸经典涟漪理论。将表面纳米结构的时段与计算进行比较并讨论。

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