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Three-dimensional grating nanowires for enhanced light trapping

Authors
Lee, Hoo-CheolNa, Jin-YoungMoon, Yoon-JongPark, Jin-SungEe, Ho-SeokPark, Hong-GyuKim, Sun-Kyung
Issue Date
1-4월-2016
Publisher
OPTICAL SOC AMER
Citation
OPTICS LETTERS, v.41, no.7, pp.1578 - 1581
Indexed
SCIE
SCOPUS
Journal Title
OPTICS LETTERS
Volume
41
Number
7
Start Page
1578
End Page
1581
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/88957
DOI
10.1364/OL.41.001578
ISSN
0146-9592
Abstract
We propose rationally designed 3D grating nanowires for boosting light-matter interactions. Full-vectorial simulations show that grating nanowires sustain high-amplitude waveguide modes and induce a strong optical antenna effect, which leads to an enhancement in nanowire absorption at specific or broadband wavelengths. Analyses of mode profiles and scattering spectra verify that periodic shells convert a normal plane wave into trapped waveguide modes, thus giving rise to scattering dips. A 200 nm diameter crystalline Si nanowire with designed periodic shells yields an enormously large current density of similar to 28 mA/cm(2) together with an absorption efficiency exceeding unity at infrared wavelengths. The grating nanowires studied herein will provide an extremely efficient absorption platform for photovoltaic devices and colorsensitive photodetectors. (C) 2016 Optical Society of America
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