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Microstructure of planar glass substrates modified by Laser Ablation Backwriting (LAB) of metal targets

机译:金属靶材的激光烧蚀回写(LAB)改性的平面玻璃基板的微观结构

摘要

Geometrically controlled, channel-like structures were prepared on commercial, soda-lime glass substrates, by a Laser Ablation Backwriting (LAB) process using a commercial Nd:YVO4 laser fitted with a beam steering galvanometer mirror unit. 70Cu30Zn Brass alloy, Ag and Al metal targets were evaporated onto glass substrates by simple irradiation through the same glass substrates. The resultant structures were characterized by SEM, TEM, and UV-vis-nIR spectroscopy. These revealed the presence of metal nanostructures in the case of brass and Ag targets, with their typical local surface plasmon resonance (LSPR) bands. In contrast, Al was not found in its elemental form, but rather integrated into the glass substrate. These results were confirmed by energy dispersive X-ray microanalysis (EDS) studies, performed with TEM and SEM observation on representative, polished cross section samples. Preliminary light guiding studies demonstrated the potential to develop burried waveguides just below the surface of the glass substrates in all cases, suggesting that LAB may be a convenient method to prepare stable waveguides by modifying inexpensive, commercial window glass. © 2014 Elsevier B.V. All rights reserved.
机译:使用装有光束控制振镜单元的商用Nd:YVO4激光器,通过激光烧蚀重写(LAB)工艺在商用钠钙玻璃基板上制备出几何受控的通道状结构。 70Cu30Zn黄铜合金,Ag和Al金属靶材通过同一玻璃基板的简单照射而蒸发到玻璃基板上。通过SEM,TEM和UV-vis-nIR光谱对所得结构进行表征。这些表明在黄铜和银靶的情况下,金属纳米结构具有典型的局部表面等离振子共振(LSPR)带。相反,未发现Al以其元素形式存在,而是整合到玻璃基板中。这些结果已通过能量色散X射线微分析(EDS)研究得到证实,该研究通过对代表性的抛光横截面样品进行TEM和SEM观察来进行。初步的光导研究表明,在所有情况下都可能在玻璃基板表面的下方开发埋藏式波导,这表明LAB可能是通过修改廉价的商用窗玻璃来制备稳定波导的便捷方法。 ©2014 Elsevier B.V.保留所有权利。

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