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A universal simulating framework for quantum key distribution systems.

, , , , , , and . Sci. China Inf. Sci., 63 (8): 1-15 (2020)

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Quantum key distribution over a mimicked dynamic-scattering channel., , , , , , , , , and . Sci. China Inf. Sci., (2024)Signal Processing in Twin-field Quantum Key Distribution., , , , , and . WCSP, page 578-581. IEEE, (2022)A universal simulating framework for quantum key distribution systems., , , , , , and . Sci. China Inf. Sci., 63 (8): 1-15 (2020)Afterpulse analysis for passive decoy quantum key distribution., , , , , , and . Quantum Eng., (2020)Reference-free-independent quantum key distribution immune to detector side channel attacks., , , , , and . Quantum Inf. Process., 13 (5): 1237-1244 (2014)Monitoring the intercept-resend attack with the weak measurement model., , and . Quantum Inf. Process., 17 (10): 257 (2018)Security of BB84 with weak randomness and imperfect qubit encoding., , , , , , and . Quantum Inf. Process., 17 (3): 55 (2018)Measurement-device-independent quantum key distribution for nonstandalone networks., , , , , , , , , and . CoRR, (2021)Polarization-insensitive quantum key distribution using planar lightwave circuit chips., , , , , , , , , and 2 other author(s). Sci. China Inf. Sci., (2022)Chau-Wang-Wong17 scheme is experimentally more feasible than the six-state scheme., , , , and . Quantum Inf. Process., 18 (5): 138 (2019)