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Quantum Communication Networks
Quantum Cryptography Security
Quantum Error Correction Fault Tolerance
Simple efficient decoders for quantum key distribution over quantum repeaters with encoding
arXiv
Authors: Yumang Jing, Mohsen Razavi
Year
2020
Paper ID
556
Status
Preprint
Abstract Read
~2 min
Abstract Words
156
Citations
N/A
Abstract
We study the implementation of quantum key distribution (QKD) systems over quantum repeater infrastructures. We particularly consider quantum repeaters with encoding and compare them with probabilistic quantum repeaters. To that end, we propose two decoder structures for encoded repeaters that not only improve system performance but also make the implementation aspects easier by removing two-qubit gates from the QKD decoder. By developing several scalable numerical and analytical techniques, we then identify the resilience of the setup to various sources of error in gates, measurement modules, and initialization of the setup. We apply our techniques to three- and five-qubit repetition codes and obtain the normalized secret key generation rate per memory per second for encoded and probabilistic quantum repeaters. We quantify the regimes of operation, where one class of repeater outperforms the other, and find that there are feasible regimes of operation where encoded repeaters - based on simple three-qubit repetition codes - could offer practical advantages.
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