Three-dimensional grating nanowires for enhanced light trapping

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 br...

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Veröffentlicht in:Optics letters 2016-04, Vol.41 (7), p.1578-1581
Hauptverfasser: Lee, Hoo-Cheol, Na, Jin-Young, Moon, Yoon-Jong, Park, Jin-Sung, Ee, Ho-Seok, Park, Hong-Gyu, Kim, Sun-Kyung
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Sprache:eng
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Zusammenfassung: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 ∼28  mA/cm 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 color-sensitive photodetectors.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.41.001578