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Self-organized 3D structures under laser evaporation of solids: formation and properties

机译:在激光蒸发下自组织的3D结构:形成和性质

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The review of recent results is presented on laser-assisted formation of self-organized 3D structures under laser irradiation solids (Si, Ge, Ti, W, Nb, Mo, stainless steel, etc.) by sufficiently long sequence of laser pulses of order of 104. At laser fluence close to the melting threshold this leads to appearance of an array of micro-cones on the solid surface that grow towards the laser beam axis. The spatial period of the micro-cones is determined by that of the capillary waves on the melt surface and is typically of 10-20 μm. The formation of 3D structures is interpreted as the non-linear stage of the instability of the melt on laser-exposed solid surface, where the feedback is due to the variation of surface reflectivity with the angle of incidence of laser radiation and concentration of incident radiation into the bottom of the sinusoidal relief. The formation of 3D structures is assigned to displacement of the melt under gradient of the surface tension (Marangoni effect). The reflectivity of the 3D array of micro-columns is studied in a wide range of wavelengths from 0.2 to 25 μm. The low-threshold field electron emission of 3D structures on Si is demonstrated.
机译:通过足够长的激光顺序序列,对最近的近期结果的审查提供了激光辅助形成自组织3D结构的自组织3D结构(Si,Ge,Ti,W,Nb,Mo,不锈钢等)。在104.在激光阈值接近熔化阈值的情况下,这导致在为激光束轴线生长的固体表面上的微锥阵列的外观。微锥体的空间周期由熔体表面上的毛细波的波浪确定,并且通常为10-20μm。 3D结构的形成被解释为激光暴露的固体表面上熔体的不稳定性的非线性阶段,其中反馈是由于表面反射率与激光辐射的发生率和入射辐射浓度的变化进入正弦浮雕的底部。 3D结构的形成被分配到表面张力梯度下熔体的位移(Marangoni效应)。在0.2至25μm的宽范围的波长范围内研究了3D微柱阵列的反射率。证明了Si上的3D结构的低阈值场电子发射。

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