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首页> 外文期刊>Оптика и спектроскопия >OPTICAL MODIFICATION OF SEMICONDUCTOR SURFACES THROUGH THE NANORIPPLES FORMATION USING ULTRASHORT LASER PULSES: EXPERIMENTAL ASPECTS
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OPTICAL MODIFICATION OF SEMICONDUCTOR SURFACES THROUGH THE NANORIPPLES FORMATION USING ULTRASHORT LASER PULSES: EXPERIMENTAL ASPECTS

机译:使用超短脉冲激光通过纳米粒子形成对半导体表面进行光学修饰:实验方面

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摘要

We review the studies of nanoripples formation on various semiconductor species using ultrashort pulses and different experimental conditions. We present recent studies in this field and discuss the fabrication of 2D periodic nanostructures formed on the surface of semiconductor crystals applying a method of two-beam interference of femtosecond laser. Further, we discuss the short-period ripples formation and present the studies of the semiconductors with different bandgaps potentially suitable for generation of subwavelength nanoripples. We also show the method of formation of the nanoholes and nanodots on the surface of different semiconductors. Ripples formation using different laser parameters and ambient media is analyzed with the objective of identifying conditions of forming short-period nanoripples. Finally, we discuss the formation of extended homogenoous laser-induced periodic surface structures using few-cycle laser pulses.
机译:我们回顾了使用超短脉冲和不同的实验条件在各种半导体物种上形成纳米波纹的研究。我们目前在该领域的最新研究,并讨论了使用飞秒激光的两束干涉方法在半导体晶体表面形成的二维周期性纳米结构的制造。此外,我们讨论了短周期波纹的形成,并提出了具有不同带隙的半导体的研究,这些带隙可能适合于产生亚波长纳米波纹。我们还展示了在不同半导体表面上形成纳米孔和纳米点的方法。分析了使用不同激光参数和环境介质的波纹形成,目的是确定形成短周期纳米波纹的条件。最后,我们讨论了使用少周期激光脉冲形成扩展的均匀激光诱导的周期性表面结构的方法。

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