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迈向光频下的完美超宽带吸收器、超窄波导和超小腔。

Towards Perfect Ultra-Broadband Absorbers, Ultra-Narrow Waveguides, and Ultra-Small Cavities at Optical Frequencies.

作者信息

Goudarzi Kiyanoush, Lee Moonjoo

机构信息

Department of Electrical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Korea.

出版信息

Nanomaterials (Basel). 2022 Jun 21;12(13):2132. doi: 10.3390/nano12132132.

Abstract

In this study, we design ultra-broadband optical absorbers, ultra-narrow optical waveguides, and ultra-small optical cavities comprising two-dimensional metallic photonic crystals that tolerate fabrication imperfections such as position and radius disorderings. The absorbers containing gold rods show an absorption amplitude of more than 90% under 54% position disordering at 200<λ<530 nm. The absorbers containing silver rods show an absorptance of more than 90% under 54% position disordering at 200<λ<400 nm. B-type straight waveguides that contain four rows of silver rods exposed to air reveal normalized transmittances of 75% and 76% under 32% position and 60% radius disorderings, respectively. B-type L-shaped waveguides containing four rows of silver rods show 76% and 90% normalized transmittances under 32% position and 40% radius disorderings, respectively. B-type cavities containing two rings of silver rods reveal 70% and 80% normalized quality factors under 32% position and 60% radius disorderings, respectively.

摘要

在本研究中,我们设计了超宽带光吸收器、超窄光波导和超小光学腔,它们由二维金属光子晶体组成,能够容忍诸如位置和半径无序等制造缺陷。含金条的吸收器在位置无序度为54%、波长范围200<λ<530 nm时,吸收幅度超过90%。含银条的吸收器在位置无序度为54%、波长范围200<λ<400 nm时,吸收率超过90%。暴露于空气中的含四排银条的B型直波导在位置无序度为32%和半径无序度为60%时,归一化透射率分别为75%和76%。含四排银条的B型L形波导在位置无序度为32%和半径无序度为40%时,归一化透射率分别为76%和90%。含两环银条的B型腔在位置无序度为32%和半径无序度为60%时,归一化品质因数分别为70%和80%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c595/9268687/1b3b52a47a11/nanomaterials-12-02132-g003.jpg

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