Formation of micro/nano-metric holes/voids in Al2O3-coated boro-aluminosilicate glass by single pulse femtosecond laser irradiation

Md. Shamim Ahsan, Man-Seop Lee, R. S. Rafi
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Abstract

In this paper, we report the formation of periodic array of micro/nano-scale holes/voids on the surface of and inside Al2O3-coated boro-aluminosilicate glass by means of single pulse femtosecond laser irradiation. The lowest diameter of the nano-holes printed on the Al2O3 coating reaches down to 700 nm, whereas the lowest diameter of the voids inside the glass was 1.1 μm. The fabricated micro/nano-metric holes and voids show uniformity in size and shape throughout the sample area. We also investigate the surface property of the nanovoids' evolved glass surface. We don't observe any structure on the sample surface, when the voids have been evolved inside the glass sample. In addition, we investigate the formation mechanism of the micro/nano-holes or voids in our double-layer samples. We strongly believe that, the periodic micro/nano-voids array will be useful in fabricating various photonic/optical devices, especially, in spreading light.
单脉冲飞秒激光辐照al2o3涂层硼铝硅酸盐玻璃微/纳米孔洞的形成
本文报道了利用单脉冲飞秒激光照射在al2o3涂层硼铝硅酸盐玻璃表面和内部形成微/纳米级孔/空洞的周期性阵列。Al2O3涂层上的纳米孔的最小直径可达700 nm,而玻璃内部的孔的最小直径为1.1 μm。制备的微/纳米孔和孔洞在整个样品区域的大小和形状上都是均匀的。我们还研究了纳米孔洞形成的玻璃表面的表面性质。当玻璃样品内部已经形成空洞时,我们在样品表面没有观察到任何结构。此外,我们还研究了双层样品中微/纳米孔或空洞的形成机制。我们坚信,周期微/纳米孔洞阵列将有助于制造各种光子/光学器件,特别是在传播光方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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