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Cation Vacancy in Wide Bandgap III-Nitrides as Single-Photon Emitter: A First-Principles Investigation
H. Zang; X. Sun; K. Jiang; Y. Chen; S. Zhang; J. Ben; Y. Jia; T. Wu; Z. Shi and D. Li
2021
发表期刊Advanced Science
ISSN21983844
卷号8期号:18
摘要Single-photon sources based on solid-state material are desirable in quantum technologies. However, suitable platforms for single-photon emission are currently limited. Herein, a theoretical approach to design a single-photon emitter based on defects in solid-state material is proposed. Through group theory analysis and hybrid density functional theory calculation, the charge-neutral cation vacancy in III-V compounds is found to satisfy a unique 5-electron-8-orbital electronic configuration with Td symmetry, which is possible for single-photon emission. Furthermore, it is confirmed that this type of single-photon emitter only exists in wide bandgap III-nitrides among all the III-V compounds. The corresponding photon energy in GaN, AlN, and AlGaN lies within the optimal range for transfer in optical fiber, thereby render the charge-neutral cation vacancy in wide-bandgap III-nitrides as a promising single-photon emitter for quantum informationapplications. 2021 The Authors. Advanced Science published by Wiley-VCH GmbH
DOI10.1002/advs.202100100
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收录类别SCI ; EI
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/65087
专题中国科学院长春光学精密机械与物理研究所
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H. Zang,X. Sun,K. Jiang,et al. Cation Vacancy in Wide Bandgap III-Nitrides as Single-Photon Emitter: A First-Principles Investigation[J]. Advanced Science,2021,8(18).
APA H. Zang.,X. Sun.,K. Jiang.,Y. Chen.,S. Zhang.,...&Z. Shi and D. Li.(2021).Cation Vacancy in Wide Bandgap III-Nitrides as Single-Photon Emitter: A First-Principles Investigation.Advanced Science,8(18).
MLA H. Zang,et al."Cation Vacancy in Wide Bandgap III-Nitrides as Single-Photon Emitter: A First-Principles Investigation".Advanced Science 8.18(2021).
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