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Morphology Studies Of The Metal Surfaces With Enhanced Absorption Fabricated Using Interferometric Femtosecond Ablation

机译:飞秒飞秒烧蚀法制备增强吸收金属表面的形貌研究

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摘要

Recently, the enhancing of bulk metals optical absorption with focused femtosecond pulses was demonstrated. This absorption enhancement is caused by different nano- and micro-structures which are formed during laser ablation with ultrashort pulses. In this paper we study the evolution of the surface structures using interferometric ablation and compare it to normal fs-ablation. Previously we have shown that interferometric femtosecond ablation is an efficient method to fabricate absorbing metal surfaces. In this study we ablated large areas of hole-array structures with different pulse numbers in polished stainless steel and copper samples. The evolution of surface morphology and the depth of the holes for these structured surfaces are presented. In addition, the reflectance of laser generated surface structures are measured at the wavelength range of 200-2300 nm using a standard spectrophotometer.
机译:最近,已证明通过聚焦的飞秒脉冲增强了块状金属的光吸收。这种吸收增强是由于在超短脉冲激光烧蚀过程中形成的不同纳米结构和微观结构引起的。在本文中,我们使用干涉消融研究了表面结构的演变并将其与常规fs消融进行了比较。先前我们已经证明了干涉飞秒消融是一种制造吸收性金属表面的有效方法。在这项研究中,我们在抛光的不锈钢和铜样品中烧蚀了大面积的具有不同脉冲数的孔阵列结构。介绍了这些结构化表面的表面形态演变和孔的深度。另外,使用标准分光光度计在200-2300nm的波长范围内测量激光产生的表面结构的反射率。

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