简介概要

First-principles study of electronic structure and optical properties of Er:Lu2O3

来源期刊:JOURNAL OF RARE EARTHS2021年第4期

论文作者:Xian Zhang Honglei Zhao Sen Gao Qingfeng Zeng

文章页码:453 - 459

摘    要:In the present computational study,we found that Er:Lu2 O3 materials have promise for application in laser applications.The crystal structure and the electronic and optical properties of Er:Lu2 O3 materials were studied using first-principle calculations under the framework of density functional theory.Based on the experimental and calculated results,the structure of Lu2 O3 was established.The calculated results show that doping by Er3+ can effectively improve its absorption coefficient in the ultraviolet region and improve the static dielectric constant of Lu2 O3.As the doping concentration of Er3+increases,the energy of the valence band electrons excited to the conduction band decreases,and the transition is more likely to occur.The abso rption coefficient,reflectance,and electro n energy loss spectro scopy are bathochromic shifted.The Lu2-xErxO3(0 <x≤0.09375) system still retains a low absorption coefficient reflectance in the mid-infrared and visible regions.Our calculations therefore show that rare earth Er3+ doping can effectively regulate the electronic structure and optical properties of Lu2 O3.

详情信息展示

First-principles study of electronic structure and optical properties of Er:Lu2O3

Xian Zhang1,Honglei Zhao1,Sen Gao1,Qingfeng Zeng2

1. School of Advanced Materials and Nanotechnology,Xidian University2. International Center for Materials Discovery,School of Materials Science and Engineering,Northwestern Polytechnical University

摘 要:In the present computational study,we found that Er:Lu2 O3 materials have promise for application in laser applications.The crystal structure and the electronic and optical properties of Er:Lu2 O3 materials were studied using first-principle calculations under the framework of density functional theory.Based on the experimental and calculated results,the structure of Lu2 O3 was established.The calculated results show that doping by Er3+ can effectively improve its absorption coefficient in the ultraviolet region and improve the static dielectric constant of Lu2 O3.As the doping concentration of Er3+increases,the energy of the valence band electrons excited to the conduction band decreases,and the transition is more likely to occur.The abso rption coefficient,reflectance,and electro n energy loss spectro scopy are bathochromic shifted.The Lu2-xErxO3(0 <x≤0.09375) system still retains a low absorption coefficient reflectance in the mid-infrared and visible regions.Our calculations therefore show that rare earth Er3+ doping can effectively regulate the electronic structure and optical properties of Lu2 O3.

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