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Proceedings Paper

Timing properties of superconducting nanowire single-photon detectors
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Paper Abstract

In this paper, we review theoretical and experimental research progress on timing properties of superconducting nanowire single-photon detectors, including six possible mechanisms that induce timing jitter and experiments towards ultra-low timing jitter.

Paper Details

Date Published: 30 April 2019
PDF: 13 pages
Proc. SPIE 11027, Quantum Optics and Photon Counting 2019, 1102704 (30 April 2019); doi: 10.1117/12.2520271
Show Author Affiliations
Xiaolong Hu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Kai Zou, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Nan Hu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Yun Meng, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Liang Xu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Xiaojian Lan, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Xiaoming Chi, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Chao Gu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Yuhao Cheng, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Hao Wu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Haiyi Liu, Tianjin Univ. (China)
Key Lab. of Optoelectronic Information Science and Technology (China)
Julien Zichi, KTH Royal Institute of Technology (Sweden)
Val Zwiller, KTH Royal Institute of Technology (Sweden)


Published in SPIE Proceedings Vol. 11027:
Quantum Optics and Photon Counting 2019
Ivan Prochazka; Roman Sobolewski; Ralph B. James; Peter Domokos; Adam Gali, Editor(s)

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