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Thin film surface processing by ultrashort laser pulses (USLP)

机译:超短激光脉冲(USLP)的薄膜表面处理

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摘要

In this work, we studied the feasibility of surface texturing of thin molybdenum layers on a borosilicate glass substrate with Ultra-Short Laser Pulses (USLP). Large areas of regular diffraction gratings were produced consisting of Laserinduced periodic surface structures (LIPSS). A short pulsed laser source (230 fs-10 ps) was applied using a focused Gaussian beam profile (15-30 μm). Laser parameters such as fluence, overlap (OL) and Overscans (OS), repetition frequency (100-200 kHz), wavelength (1030 nm, 515 nm and 343 nm) and polarization were varied to study the effect on periodicity, height and especially regularity of LIPSS obtained in layers of different thicknesses (150-400 nm). The aim was to produce these structures without cracking the metal layer and with as little ablation as possible. It was found that USLP are suitable to reach high power densities at the surface of the thin layers, avoiding mechanical stresses, cracking and delamination. A possible photovoltaic (PV) application could be found in texturing of thin film cells to enhance light trapping mechanisms
机译:在这项工作中,我们研究了使用超短激光脉冲(USLP)对硼硅酸盐玻璃基板上的钼薄层进行表面纹理化的可行性。产生了由激光诱导的周期性表面结构(LIPSS)组成的大面积规则衍射光栅。使用聚焦高斯光束轮廓(15-30μm)施加短脉冲激光源(230 fs-10 ps)。改变诸如通量,重叠(OL)和过扫描(OS),重复频率(100-200 kHz),波长(1030 nm,515 nm和343 nm)和偏振之类的激光参数,以研究对周期性,高度尤其是其影响在不同厚度(150-400 nm)的层中获得的LIPSS的规则性。目的是在不使金属层开裂且消融尽可能少的情况下生产这些结构。发现USLP适合于在薄层的表面上达到高功率密度,避免了机械应力,破裂和分层。在薄膜电池的纹理化中可以发现一种可能的光伏(PV)应用,以增强光捕获机制

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