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通过激发全介质锥形结构的表面模式实现宽带光捕获的实验演示。

Experimental demonstration of broadband light trapping by exciting surface modes of an all-dielectric taper.

作者信息

Huang Tsung-Yu, Yen Ta-Jen

机构信息

Department of Materials Science and Engineering, National Tsing Hua University, Hsinchu, 30013, Taiwan, Republic of China.

Department of Materials Engineering, Ming Chi University of Technology, New Taipei City, 24301, Taiwan, Republic of China.

出版信息

Sci Rep. 2019 Mar 5;9(1):3538. doi: 10.1038/s41598-019-39906-8.

Abstract

We design an all-dielectric taper and then excite its surface modes by illuminating a plane wave upon the taper to achieve broadband light trapping spanning from 20 to 100 GHz. Via Lewin's theory, such excitation of surface modes could be analogous to "trapped rainbow", i.e., activation of negative Goos-Hänchen effect within a negative refractive waveguide. To further reinforce this statement, the corresponding power flow distributions within the all-dielectric taper are recorded in finite-integration time domain simulation and suggest that a chromatic incident pulse is indeed trapped at different critical thicknesses of the taper, a character of the negative refractive waveguide. Finally, the transmittance is measured and compared to the simulated ones. The two followed the similar trend.

摘要

我们设计了一种全介质锥形结构,然后通过在该锥形结构上照射平面波来激发其表面模式,以实现20至100 GHz的宽带光捕获。根据莱文理论,这种表面模式的激发类似于“捕获彩虹”,即在负折射率波导内激活负古斯-汉欣效应。为了进一步强化这一说法,在有限积分时域模拟中记录了全介质锥形结构内相应的功率流分布,结果表明,一个色散入射脉冲确实在锥形结构的不同临界厚度处被捕获,这是负折射率波导的一个特征。最后,测量了透过率并与模拟结果进行比较。两者呈现出相似的趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94a5/6401000/f242a2d093f6/41598_2019_39906_Fig1_HTML.jpg

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