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用于三维微光学复合部件的玻璃-玻璃渗透法

Glass-in-glass infiltration for 3D micro-optical composite components.

作者信息

Casamenti Enrico, Torun Gözden, Borasi Luciano, Lautenbacher Maxime, Bertrand Mathieu, Faist Jérôme, Mortensen Andreas, Bellouard Yves

出版信息

Opt Express. 2022 Apr 11;30(8):13603-13615. doi: 10.1364/OE.451026.

Abstract

Chalcogenide glass exhibits a wide transmission window in the infrared range, a high refractive index, and nonlinear optical properties; however, due to its poor mechanical properties and low chemical and environmental stability, producing three-dimensional microstructures of chalcogenide glass remains a challenge. Here, we combine the fabrication of arbitrarily shaped three-dimensional cavities within fused silica molds by means of femtosecond laser-assisted chemical etching with the pressure-assisted infiltration of a chalcogenide glass into the resulting carved silica mold structures. This process enables the fabrication of 3D, geometrically complex, chalcogenide-silica micro-glass composites. The resulting products feature a high refractive index contrast that enables total-internal-reflection guiding and an optical quality roughness level suited for applications in the infrared.

摘要

硫族化物玻璃在红外波段具有较宽的透过窗口、高折射率和非线性光学特性;然而,由于其机械性能较差以及化学和环境稳定性较低,制造硫族化物玻璃的三维微结构仍然是一项挑战。在此,我们通过飞秒激光辅助化学蚀刻在熔融石英模具内制造任意形状的三维腔体,并将硫族化物玻璃压力辅助渗入到由此雕刻而成的石英模具结构中。这一过程能够制造出三维的、几何形状复杂的硫族化物 - 石英微玻璃复合材料。所得产品具有高折射率对比度,可实现全内反射导光,并且光学质量粗糙度水平适合红外应用。

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