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首页> 外文期刊>Quantum electronics >Increase in the resolution of the method of surface nanostructuring by femtosecond-laser impact through a layer of colloidal microparticles
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Increase in the resolution of the method of surface nanostructuring by femtosecond-laser impact through a layer of colloidal microparticles

机译:飞秒激光通过胶体微粒层提高表面纳米结构方法的分辨率

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摘要

It is experimentally demonstrated that by converting a few percent of the fundamental frequency pulse energy into the second harmonic one can obtain surface structures using dielectric microspheres with the dimension of the order of the second harmonic wavelength. Structuring by means of the second harmonic solely requires a significantly greater energy density in the pulse than using bichromatic irradiation. It is impossible to obtain structures using only the fundamental frequency radiation pulses, because radiation at the fundamental frequency is not focused by the system of microspheres. Therefore, the use of bichromatic pulses allows an essential increase in the structure recording density. Theoretical calculations demonstrating the possibility of further improvement of the structure recording density by using nonspherical microlenses of a smaller size made of a material with a higher refractive index are presented.
机译:实验证明,通过将百分之几的基频脉冲能量转换为二次谐波,可以使用介电微球获得尺寸约为二次谐波波长的表面结构。与使用双色辐射相比,通过二次谐波进行结构化仅需要脉冲中明显更高的能量密度。仅使用基频辐射脉冲不可能获得结构,因为基频辐射不会被微球系统聚焦。因此,使用双色脉冲允许本质上增加结构记录密度。提出了理论计算,该理论计算证明了通过使用由具有较高折射率的材料制成的较小尺寸的非球形微透镜来进一步改善结构记录密度的可能性。

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