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Entanglement Concentration for Concatenated Greenberger-Horne-Zeilinger State Assisted with Single Logic Qubit., , , и . VTC Spring, стр. 1-6. IEEE, (2017)The hyperentanglement-based quantum secure direct communication protocol with single-photon measurement., , , , и . Quantum Inf. Process., 22 (9): 339 (сентября 2023)An Evolutionary Pathway for the Quantum Internet Relying on Secure Classical Repeaters., , , , , и . IEEE Netw., 36 (3): 82-88 (2022)Measurement-Device-Independent Three-party Quantum Secure Direct Communication Based on Entanglement Swapping., , , и . WCSP, стр. 1-8. IEEE, (2022)Two-step measurement of the concurrence for hyperentangled state., , , , и . Quantum Inf. Process., 14 (3): 963-978 (2015)Entanglement concentration for concatenated Greenberger-Horne-Zeilinger state., , и . Quantum Inf. Process., 14 (11): 4131-4146 (2015)Heralded noiseless amplification for single-photon entangled state with polarization feature., , , , , , и . Quantum Inf. Process., 17 (3): 56 (2018)The Feasible Hyper-encoding Measurement-device-independent Deterministic Secure Quantum Communication Protocol., , , , и . Quantum Inf. Process., 22 (8): 325 (августа 2023)The Evolution of Quantum Secure Direct Communication: On the Road to the Qinternet., , , , , , , и . IEEE Commun. Surv. Tutorials, 26 (3): 1898-1949 (Thirdquarter 2024)Even- and odd-orthogonality properties of the Wigner D-matrix and their metrological applications., , , и . Quantum Inf. Process., 22 (1): 56 (января 2023)