Single Photon Sources (SPSs) play a pivotal role in fields such as quantum communication and quantum cryptography by generating information in a secure manner. However, realizing the ideal emission of single photons with high efficiency is still a theoretical model. This leads to the presence of multiphoton components in SPSs, which could potentially compromise security. This study focuses on enhancing the purity of a class of sources by characterizing their photon number distribution and mitigating the impact of the multiphoton components. We propose the use of Photon Number Resolving Detectors (PNRD) as a technique to exclude multiphoton contributions, particularly in sources like Spontaneous Parametric Down Conversion sources, where emitted photons can be represented as Two-Mode Squeezed Vacuum states. By analyzing the second-order cross-correlation function, g2(0), using either PNRD or Single Photon Detectors, we can quantify the reduction in multiphoton contributions.
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January 2024
Research Article|
January 01 2024
Reduction of g2(0) value in heralded spontaneous parametric down-conversion sources using photon number resolving detectors Available to Purchase
C. Bruscino;
C. Bruscino
a)
1
Dip. di Fisica “E. Pancini”, Università degli Studi di Napoli Federico II
, Napoli I-80125, Italy
a)Author to whom correspondence should be addressed: [email protected]
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M. Ejrnaes;
M. Ejrnaes
3
CNR-SPIN Institute of Superconductors, Innovative Materials and Devices
, Italy
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P. Ercolano;
P. Ercolano
1
Dip. di Fisica “E. Pancini”, Università degli Studi di Napoli Federico II
, Napoli I-80125, Italy
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D. Salvoni;
D. Salvoni
2
Photon Technology
, Jiashan, Zhejiang 314100, People's Republic of China
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C. Zhang;
C. Zhang
2
Photon Technology
, Jiashan, Zhejiang 314100, People's Republic of China
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H. Li;
H. Li
4
Shanghai Key Laboratory of Supercoductor Integrated Circuit Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences
, Shanghai 200050, People's Republic of China
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L. You;
L. You
4
Shanghai Key Laboratory of Supercoductor Integrated Circuit Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences
, Shanghai 200050, People's Republic of China
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L. Parlato;
L. Parlato
1
Dip. di Fisica “E. Pancini”, Università degli Studi di Napoli Federico II
, Napoli I-80125, Italy
3
CNR-SPIN Institute of Superconductors, Innovative Materials and Devices
, Italy
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G. P. Pepe
G. P. Pepe
1
Dip. di Fisica “E. Pancini”, Università degli Studi di Napoli Federico II
, Napoli I-80125, Italy
3
CNR-SPIN Institute of Superconductors, Innovative Materials and Devices
, Italy
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C. Bruscino
1,a)
M. Ejrnaes
3
P. Ercolano
1
D. Salvoni
2
C. Zhang
2
H. Li
4
L. You
4
L. Parlato
1,3
G. P. Pepe
1,3
1
Dip. di Fisica “E. Pancini”, Università degli Studi di Napoli Federico II
, Napoli I-80125, Italy
3
CNR-SPIN Institute of Superconductors, Innovative Materials and Devices
, Italy
2
Photon Technology
, Jiashan, Zhejiang 314100, People's Republic of China
4
Shanghai Key Laboratory of Supercoductor Integrated Circuit Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences
, Shanghai 200050, People's Republic of China
a)Author to whom correspondence should be addressed: [email protected]
Fiz. Nizk. Temp. 50, 27–31 (January 2024)
Low Temp. Phys. 50, 24–28 (2024)
Article history
Received:
November 24 2023
Citation
C. Bruscino, M. Ejrnaes, P. Ercolano, D. Salvoni, C. Zhang, H. Li, L. You, L. Parlato, G. P. Pepe; Reduction of g2(0) value in heralded spontaneous parametric down-conversion sources using photon number resolving detectors. Low Temp. Phys. 1 January 2024; 50 (1): 24–28. https://doi.org/10.1063/10.0023887
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