题名 | Defect Engineering for Quantum Grade Rare-Earth Nanocrystals |
作者 | |
共同第一作者 | Liu,Shuping; Fossati,Alexandre |
发表日期 | 2020-08-25
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DOI | |
发表期刊 | |
ISSN | 1936-0851
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EISSN | 1936-086X
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卷号 | 14期号:8页码:9953-9962 |
摘要 | Nanostructured systems that combine optical and spin transitions offer new functionalities for quantum technologies by providing efficient quantum light-matter interfaces. Rare-earth (RE) ion-doped nanoparticles are promising in this field as they show long-lived optical and spin quantum states. However, further development of their use in highly demanding applications, such as scalable single-ion-based quantum processors, requires controlling defects that currently limit coherence lifetimes. In this work, we show that a post-treatment process that includes multistep high-temperature annealing followed by high-power microwave oxygen plasma processing advantageously improves key properties for quantum technologies. We obtain single crystalline Eu3+:Y2O3 nanoparticles (NPs) of 100 nm diameter, presenting bulk-like inhomogeneous line widths (Γinh) and population lifetimes (T1). Furthermore, a significant coherence lifetime (T2) extension, up to a factor of 5, is successfully achieved by modifying the oxygen-related point defects in the NPs by the oxygen plasma treatment. These promising results confirm the potential of engineered RE NPs to integrate devices such as cavity-based single-photon sources, quantum memories, and processors. In addition, our strategy could be applied to a large variety of oxides to obtain outstanding crystalline quality NPs for a broad range of applications. |
关键词 | |
相关链接 | [Scopus记录] |
收录类别 | |
语种 | 英语
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重要成果 | NI论文
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学校署名 | 其他
|
资助项目 | European Union Horizon 2020 Research and Innovation Programme[712721]
; Key R&D Program of Guangdong province[2018B030325001]
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WOS研究方向 | Chemistry
; Science & Technology - Other Topics
; Materials Science
|
WOS类目 | Chemistry, Multidisciplinary
; Chemistry, Physical
; Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
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WOS记录号 | WOS:000566341000059
|
出版者 | |
EI入藏号 | 20204209348590
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EI主题词 | Microwaves
; Point defects
; Plasma applications
; Particle beams
; Oxygen
; Rare earths
; Nanoparticles
|
EI分类号 | Electromagnetic Waves:711
; Nanotechnology:761
; Chemical Products Generally:804
; Inorganic Compounds:804.2
; High Energy Physics:932.1
; Plasma Physics:932.3
; Solid State Physics:933
; Crystalline Solids:933.1
; Crystal Lattice:933.1.1
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Scopus记录号 | 2-s2.0-85090079455
|
来源库 | Scopus
|
引用统计 |
被引频次[WOS]:17
|
成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/153576 |
专题 | 量子科学与工程研究院 理学院_物理系 |
作者单位 | 1.Chimie ParisTech,PSL University,CNRS,Institut de Recherche de Chimie Paris,Paris,F-75005,France 2.Shenzhen Institute for Quantum Science and Engineering,Southern University of Science and Technology,Shenzhen,518055,China 3.Faculté des Sciences et Ingénierie,Sorbonne Université,Paris,F-75005,France |
第一作者单位 | 量子科学与工程研究院 |
推荐引用方式 GB/T 7714 |
Liu,Shuping,Fossati,Alexandre,Serrano,Diana,et al. Defect Engineering for Quantum Grade Rare-Earth Nanocrystals[J]. ACS Nano,2020,14(8):9953-9962.
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APA |
Liu,Shuping,Fossati,Alexandre,Serrano,Diana,Tallaire,Alexandre,Ferrier,Alban,&Goldner,Philippe.(2020).Defect Engineering for Quantum Grade Rare-Earth Nanocrystals.ACS Nano,14(8),9953-9962.
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MLA |
Liu,Shuping,et al."Defect Engineering for Quantum Grade Rare-Earth Nanocrystals".ACS Nano 14.8(2020):9953-9962.
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条目包含的文件 | ||||||
文件名称/大小 | 文献类型 | 版本类型 | 开放类型 | 使用许可 | 操作 | |
ACSNano-2020.pdf(1335KB) | -- | -- | 限制开放 | -- |
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