Excitonic effects in the optical spectra of Li2SiO3 compound

Abstract Li2SiO3 compound exhibits unique electronic and optical properties. The state-of-the-art analyses, which based on first-principle calculations, have successfully confirmed the concise physical/chemical picture and the orbital bonding in Li–O and Si–O bonds. Especially, the unusual optical r...

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Main Authors: Nguyen Thi Han, Vo Khuong Dien, Ming-Fa Lin
Format: Article
Language:English
Published: Nature Publishing Group 2021-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-87269-w
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spelling doaj-d967878a6af645839e0ad9d64264a3e92021-04-11T11:29:38ZengNature Publishing GroupScientific Reports2045-23222021-04-0111111010.1038/s41598-021-87269-wExcitonic effects in the optical spectra of Li2SiO3 compoundNguyen Thi Han0Vo Khuong Dien1Ming-Fa Lin2Department of Physics, National Cheng Kung UniversityDepartment of Physics, National Cheng Kung UniversityDepartment of Physics, National Cheng Kung UniversityAbstract Li2SiO3 compound exhibits unique electronic and optical properties. The state-of-the-art analyses, which based on first-principle calculations, have successfully confirmed the concise physical/chemical picture and the orbital bonding in Li–O and Si–O bonds. Especially, the unusual optical response behavior includes a large red shift of the onset frequency due to the extremely strong excitonic effect, the polarization of optical properties along three-directions, various optical excitations structures and the most prominent plasmon mode in terms of the dielectric functions, energy loss functions, absorption coefficients and reflectance spectra. The close connections of electronic and optical properties can identify a specific orbital hybridization for each distinct excitation channel. The presented theoretical framework will be fully comprehending the diverse phenomena and widen the potential application of other emerging materials.https://doi.org/10.1038/s41598-021-87269-w
collection DOAJ
language English
format Article
sources DOAJ
author Nguyen Thi Han
Vo Khuong Dien
Ming-Fa Lin
spellingShingle Nguyen Thi Han
Vo Khuong Dien
Ming-Fa Lin
Excitonic effects in the optical spectra of Li2SiO3 compound
Scientific Reports
author_facet Nguyen Thi Han
Vo Khuong Dien
Ming-Fa Lin
author_sort Nguyen Thi Han
title Excitonic effects in the optical spectra of Li2SiO3 compound
title_short Excitonic effects in the optical spectra of Li2SiO3 compound
title_full Excitonic effects in the optical spectra of Li2SiO3 compound
title_fullStr Excitonic effects in the optical spectra of Li2SiO3 compound
title_full_unstemmed Excitonic effects in the optical spectra of Li2SiO3 compound
title_sort excitonic effects in the optical spectra of li2sio3 compound
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-04-01
description Abstract Li2SiO3 compound exhibits unique electronic and optical properties. The state-of-the-art analyses, which based on first-principle calculations, have successfully confirmed the concise physical/chemical picture and the orbital bonding in Li–O and Si–O bonds. Especially, the unusual optical response behavior includes a large red shift of the onset frequency due to the extremely strong excitonic effect, the polarization of optical properties along three-directions, various optical excitations structures and the most prominent plasmon mode in terms of the dielectric functions, energy loss functions, absorption coefficients and reflectance spectra. The close connections of electronic and optical properties can identify a specific orbital hybridization for each distinct excitation channel. The presented theoretical framework will be fully comprehending the diverse phenomena and widen the potential application of other emerging materials.
url https://doi.org/10.1038/s41598-021-87269-w
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