| DOI | Resolve DOI: https://doi.org/10.1117/12.2586902 |
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| Author | Search for: Bharadwaj, Divya; Search for: Anderson, Paul; Search for: Venuturumilli, Sreesh; Search for: Al Maruf, Rubayet; Search for: Qiu, Jiawei; Search for: Yoon, Taehyun; Search for: Semnani, Behrooz; Search for: Yuan, Yujia; Search for: Du, Jinjin; Search for: Zeeshan, Mohd; Search for: Poole, Philip1; Search for: Dalacu, Dan1; Search for: Reimer, Michael; Search for: Bajcsy, Michal |
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| Editor | Search for: Shahriar, Selim M.; Search for: Scheuer, Jacob |
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| Affiliation | - National Research Council of Canada. Advanced Electronics and Photonics
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| Format | Text, Article |
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| Conference | Optical and Quantum Sensing and Precision Metrology, March 6-12, 2021, Online Only, United States |
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| Subject | hollow-core optical fibers; laser-cooled atoms; quantum dots; single-photon wavelength conversion; single-photon source |
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| Abstract | We describe the experimental progress and the challenges of integrating a single photon source based on quantum dots embedded in semiconductor nanowires with a cold-atom experiment in which laser-cooled caesium atoms are loaded and confined inside a hollow-core micro-structured optical fiber. We focus in particular on wavelength conversion of the photons between 895nm and wavelengths suitable for satellite links (~794nm). |
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| Publication date | 2021-03-08 |
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| Publisher | SPIE |
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| In | |
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| Series | |
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| Language | English |
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| Peer reviewed | Yes |
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| Export citation | Export as RIS |
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| Report a correction | Report a correction (opens in a new tab) |
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| Record identifier | 97d4e5b5-dc9d-4bb6-8560-ed94558f1b12 |
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| Record created | 2023-01-23 |
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| Record modified | 2023-01-23 |
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