| Literature DB >> 31551611 |
Cong Liu1,2, Yongxiong Ren1, Jiapeng Zhao3, Mohammad Mirhosseini3, Seyed Mohammad Hashemi Rafsanjani3, Guodong Xie1, Kai Pang1, Haoqian Song1, Zhe Zhao1, Zhe Wang1, Long Li1, Joshua C Bienfang4, Alan Migdall4,5, Todd A Brun1,2, Moshe Tur6, Robert W Boyd3, Alan E Willner1.
Abstract
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).Entities:
Keywords: Orbital angular momentum; Quantum communication; Single photon detection
Year: 2019 PMID: 31551611 PMCID: PMC6758556 DOI: 10.1016/j.optcom.2019.01.081
Source DB: PubMed Journal: Opt Commun ISSN: 0030-4018 Impact factor: 2.310