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Investigation of beaming light through nanoapertures using real metals for aperture based imaging devices

机译:使用真实金属对基于孔径的成像设备进行的穿过纳米孔的光束研究

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摘要

We investigated light beaming through nanoapertures surrounded by periodic corrugations as a technology for aperture based imaging. Using the Finite-Difference Time-Domain (FDTD) method, we performed simulations of nanoapertures in Perfect Electric Conductor (PEC), gold, and silver to predict the beam profile when varying the geometric parameters of the corrugations. We found that the results of the FDTD simulations for nanoapertures in PEC resembled those from the perfect conductor model presented in the literature, but the FDTD simulations using silver and gold did not predict beam formation. We fabricated nanoapertures surrounded by corrugations in silver films, and measured the beam profiles with knife-edge experiments. The measured beam profiles were narrower than predicted by the FDTD simulations, and there was no appreciable difference observed in the light transmitted through a nanoaperture with or without corrugations. The results suggest PEC is a poor approximation for real metals in surface plasmon assisted beaming applications.
机译:我们研究了通过周期性波纹包围的纳米孔发出的光束,这是基于孔径的成像技术。使用有限差分时域(FDTD)方法,我们在完美电导体(PEC),金和银中对纳米孔进行了模拟,以预测改变​​波纹的几何参数时的光束轮廓。我们发现,PEC中纳米孔的FDTD模拟结果与文献中提出的理想导体模型相似,但是使用银和金的FDTD模拟无法预测束形成。我们在银膜中制造了被波纹包围的纳米孔,并通过刀口实验测量了光束轮廓。测得的光束轮廓比FDTD模拟所预测的要窄,并且在有或没有波纹的情况下,通过纳米孔传输的光没有观察到明显差异。结果表明,在表面等离激元辅助射束应用中,PEC不能很好地逼近真实金属。

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    Koo Jimmy Ngao Bong;

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  • 年度 2011
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