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Switchable detector array scheme to reduce the effect of single-photon detector’s deadtime in a multi-bit/photon quantum link
Author(s) -
Cong Liu,
Yongxiong Ren,
Jiapeng Zhao,
Mohammad Mirhosseini,
Seyed Mohammad Hashemi Rafsanjani,
Guodong Xie,
Kai Pang,
Haoqian Song,
Zhe Zhao,
Zhe Wang,
Long Li,
Joshua C. Bienfang,
Alan L. Migdall,
Todd A. Brun,
Moshe Tur,
Robert W. Boyd,
Alan E. Willner
Publication year - 2019
Publication title -
optics communications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.625
H-Index - 136
eISSN - 1873-0310
pISSN - 0030-4018
DOI - 10.1016/j.optcom.2019.01.081
Subject(s) - photon , detector , physics , optics , quantum information science , monte carlo method , quantum , quantum mechanics , statistics , quantum entanglement , mathematics
We explore the use of a switchable single-photon detector (SPD) array scheme to reduce the effect of a detector's deadtime for a multi-bit/photon quantum link. The case of data encoding using M possible orbital-angular-momentum (OAM) states is specifically studied in this paper. Our method uses N SPDs with a controllable M × N optical switch and we use a Monte Carlo-based method to simulate the quantum detection process. The simulation results show that with the use of the switchable SPD array, the detection system can allow a higher incident photon rate than what might otherwise be limited by detectors' deadtime. For the case of M = 4, N = 20, a 50-ns deadtime for the individual SPDs, an average photon number per pulse of 0.1, and under the limit that at most 10 % of the photon-containing pulses are missed, the switchable SPD array will allow an incident photon rate of 2250 million counts/s (Mcts/s). This is 25 times the 90 Mcts/s incident photon rate that a non-switchable, 4-SPD array will allow. The increase in incident photon rate is more than the 5 times increase, which is the simple increase in the number of SPDs and the number of OAM encoding states (e.g., N / M = 20/4).

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