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Deposited ultra-thin titanium nitride nanorod array as a plasmonic near-perfect light absorber
by
Jen, Yi-Jun
, Chung, Meng-Hsun
, Yang, Kai-Bin
, Lin, Po-Chun
in
639/624/399/1016
/ 639/925/357/1015
/ 639/925/357/537
/ Arrays
/ Electric fields
/ Extinction behavior
/ Humanities and Social Sciences
/ Light
/ multidisciplinary
/ Polarization
/ Polarized light
/ Resonance
/ Science
/ Science (multidisciplinary)
/ Titanium
2020
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Deposited ultra-thin titanium nitride nanorod array as a plasmonic near-perfect light absorber
by
Jen, Yi-Jun
, Chung, Meng-Hsun
, Yang, Kai-Bin
, Lin, Po-Chun
in
639/624/399/1016
/ 639/925/357/1015
/ 639/925/357/537
/ Arrays
/ Electric fields
/ Extinction behavior
/ Humanities and Social Sciences
/ Light
/ multidisciplinary
/ Polarization
/ Polarized light
/ Resonance
/ Science
/ Science (multidisciplinary)
/ Titanium
2020
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Do you wish to request the book?
Deposited ultra-thin titanium nitride nanorod array as a plasmonic near-perfect light absorber
by
Jen, Yi-Jun
, Chung, Meng-Hsun
, Yang, Kai-Bin
, Lin, Po-Chun
in
639/624/399/1016
/ 639/925/357/1015
/ 639/925/357/537
/ Arrays
/ Electric fields
/ Extinction behavior
/ Humanities and Social Sciences
/ Light
/ multidisciplinary
/ Polarization
/ Polarized light
/ Resonance
/ Science
/ Science (multidisciplinary)
/ Titanium
2020
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Deposited ultra-thin titanium nitride nanorod array as a plasmonic near-perfect light absorber
Journal Article
Deposited ultra-thin titanium nitride nanorod array as a plasmonic near-perfect light absorber
2020
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Overview
The transmittance, reflectance, and extinctance that correspond to the localized plasmonic resonance within TiN nanorods were investigated. The obliquely deposited TiN nanorod array shows polarization-independent admittance matching to air. Unlike noble metal nanorods, the near-field localized longitudinal and transverse plasmonic resonance of TiN nanorod arrays present polarization-dependent light extinction in the far field. The longitudinal plasmonic mode presents stronger extinction than transverse plasmonic mode. In order to have high efficient light absorption, an ultra-thin two-layered TiN nanorod array was fabricated with orthogonal deposition planes for upper layer and bottom layer to absorb different polarized light energy. The measured spectrum shows broadband and wide-angle light extinction.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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