Optoplasmonics: hybridization in 3D

L. Rosa, G. Gervinskas, A. Žukauskas, M. Malinauskas, E. Brasselet, S. Juodkazis
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引用次数: 1

Abstract

Femtosecond laser fabrication has been used to make hybrid refractive and di ractive micro-optical elements in photo-polymer SZ2080. For applications in micro- uidics, axicon lenses were fabricated (both single and arrays), for generation of light intensity patterns extending through the entire depth of a typically tens-of-micrometers deep channel. Further hybridisation of an axicon with a plasmonic slot is fabricated and demonstrated nu- merically. Spiralling chiral grooves were inscribed into a 100-nm-thick gold coating sputtered over polymerized micro-axicon lenses, using a focused ion beam. This demonstrates possibility of hybridisation between optical and plasmonic 3D micro-optical elements. Numerical modelling of optical performance by 3D-FDTD method is presented.
光等离子体:三维杂交
利用飞秒激光技术在光聚合物SZ2080中制备了折射率和折射率混合微光学元件。在微导系统的应用中,制造了轴锥透镜(单透镜和阵列透镜),用于产生穿过典型的几十微米深通道的整个深度的光强度模式。进一步制备了轴子与等离子体槽的杂化,并进行了数值模拟。利用聚焦离子束,在聚合微轴透镜上溅射100纳米厚的金涂层上刻上螺旋形手性凹槽。这证明了光学和等离子体三维微光学元件之间杂化的可能性。采用三维时域有限差分法对光学性能进行了数值模拟。
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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