The hyperentanglement-based quantum secure direct communication protocol with single-photon measurement (original) (raw)
References
Bennett, C.H., Brassard, G.: Quantum cryptography: public key distribution and coin tossing. Proc. IEEE Int. Conf. on Com. Sys. Signal Proc. 175–179 (1984)
Chen, Y.A., Zhang, Q., Chen, T.Y., et al.: An integrated space-to-ground quantum communication network over 4600 kilometres. Nature 589, 214 (2021) ArticleADS Google Scholar
Liu, W.B., Li, C.L., Xie, Y.M., et al.: Homodyne detection quadrature phase shift keying continuous-variable quantum key distribution with high excess noise tolerance. PRX Quant. 2, 040334 (2021) ArticleADS Google Scholar
Xie, Y.M., Lu, Y.S., Weng, C.X., et al.: Breaking the rate-loss bound of quantum key distribution with asynchronous two-photon interference. PRX Quant. 3, 020315 (2022) ArticleADS Google Scholar
Wang, S., Yin, Z.Q., He, D.Y., et al.: Twin-field quantum key distribution over 830 km fibre. Nat. Photon. 16, 154 (2022) ArticleADS Google Scholar
Liu, B., Xia, S., Xiao, D., Huang, W., Xu, B.J., Li, Y.: Decoy-state method for quantum-key-distribution-based quantum private query. Sci. China Phys. Mech. Astron. 65, 240312 (2022) ArticleADS Google Scholar
Bera, S., Gupta, S., Majumdar, A.S.: Device-independent quantum key distribution using random quantum states Quant. Inf. Process. 22, 109 (2023) ArticleMATH Google Scholar
Ju, X.X., Zhong, W., Sheng, Y.B., Zhou, L.: Measurement-device-independent quantum secret sharing with hyper-encoding. Chin. Phys. B 31, 100302 (2022) ArticleADS Google Scholar
Long, G.L., Liu, X.S.: Theoretically efficient high-capacity quantum-key-distribution scheme. Phys. Rev. A 65, 032302 (2002) ArticleADS Google Scholar
Deng, F.G., Long, G.L., Liu, X.S.: Two-step quantum direct communication protocol using the Einstein–Podolsky–Rosen pair block. Phys. Rev. A 68, 042317 (2003) ArticleADS Google Scholar
Deng, F.G., Long, G.L.: Secure direct communication with a quantum one-time pad. Phys. Rev. A 69, 052319 (2004) ArticleADS Google Scholar
Hu, J.Y., Yu, B., Jing, M.Y., Xiao, L.T., Jia, S.T., Qin, G.Q., Long, G.L.: Experimental quantum secure direct communication with single photons. Light: Sci. Appl. 5, e16144 (2016) Google Scholar
Zhang, W., Ding, D.S., Sheng, Y.B., Zhou, L., Shi, B.S., Guo, G.C.: Quantum secure direct communication with quantum memory. Phys. Rev. Lett. 118, 220501 (2017) ArticleADS Google Scholar
Zhu, F., Zhang, W., Sheng, Y.B., Huang, Y.D.: Experimental long-distance quantum secure direct communication. Sci. Bull. 22, 1519–1524 (2017) Article Google Scholar
Chen, S.S., Zhou, L., Zhong, W., Sheng, Y.B.: Three-step three-party quantum secure direct communication. Sci. China Phys. Mech. Astron. 61, 090312 (2018) Article Google Scholar
Qi, R.Y., Sun, Z., Lin, Z.S., Niu, P.H., Hao, W.T., Song, L.Y., Huang, Q., Gao, J.C., Yin, L.G., Long, G.L.: Implementation and security analysis of practical quantum secure direct communication. Light: Sci. Appl. 8, 22 (2019) Google Scholar
Wu, J.W., Lin, Z.S., Yin, L.G., Long, G.L.: Security of quantum secure direct communication based on Wyner’s wiretap channel theory. Quant. Eng. 1, e26 (2019) Google Scholar
Zhou, L., Sheng, Y.B., Long, G.L.: Device-independent quantum secure direct communication against collective attacks. Sci. Bull. 65, 12–20 (2020) Article Google Scholar
Zhou, Z.R., Sheng, Y.B., Niu, P.H., Yin, L.G., Long, G.L.: Measurement-device-independent quantum secure direct communication. Sci. China Phys. Mech. Astron. 63, 230362 (2019) Article Google Scholar
Niu, P.H., Wu, J.W., Yin, L.G., Long, G.L.: Security analysis of measurement-device-independent quantum secure direct communication. Quant. Inf. Process. 19, 10356 (2020) ArticleMathSciNetMATH Google Scholar
Pan, D., Lin, Z.S., Wu, J.W., Zhang, H.R., Sun, Z., Ruan, D., Yin, L.G., Long, G.L.: Experimental free-space quantum secure direct communication and its security analysis. Photon. Res. 8, 1522–1531 (2020) Article Google Scholar
Wu, X.D., Zhou, L., Zhong, W., Sheng, Y.B.: High-capacity measurement-device-independent quantum secure direct communication. Quant. Inform. Process. 19, 354 (2020) ArticleADSMathSciNetMATH Google Scholar
Zou, Z.K., Zhou, L., Zhong, W., Sheng, Y.B.: Measurement-device-independent quantum secure direct communication of multiple degrees of freedom of a single photon. EPL 131, 40005 (2020) ArticleADS Google Scholar
Yang, L., Wu, J.W., Lin, Z.S., Yin, L.G., Long, G.L.: Quantum secure direct communication with entanglement source and single-photon measurement. Sci. China-Phys. Mech. Astron. 63, 110311 (2020) ArticleADS Google Scholar
Long, G.L., Zhang, H.R.: Drastic increase of channel capacity in quantum secure direct communication using masking. Sci. Bull. 66, 1267–1269 (2021) Article Google Scholar
Cao, Z.W., Wang, L., Liang, K.X., et al.: Continuous-variable quantum secure direct communication based on Gaussian mapping. Phys. Rev. Appl. 16, 024012 (2021) ArticleADS Google Scholar
Qi, Z.T., Li, Y.H., Huang, W.Y., et al.: A 15-user quantum secure direct communication network. Light: Sci. Appl. 10, 183 (2021) ArticleADS Google Scholar
Zhang, H.R., Sun, Z., Qi, R.Y., Yin, L.G., Long, G.L., Lu, J.H.: Realization of quantum secure direct communication over 100 km fiber with time-bin and phase quantum. Light: Sci Appl. 11, 83 (2022) ArticleADS Google Scholar
Long, G.L., Pan, D., Sheng, Y.B., Xue, Q.K., Lu, J.H., Hanzo, L.: An evolutionary pathway for the quantum internet relying on secure classical repeaters. IEEE Netw. 36, 82–88 (2022) Article Google Scholar
Liu, X., Li, Z.J., Luo, D., Huang, C.F., Ma, D., Geng, M.M., Wang, J.W., Zhang, Z.R., Wei, K.J.: Practical decoy-state quantum secure direct communication. Sci. China Phys. Mech. Astron. 64, 120311 (2021) ArticleADS Google Scholar
Gao, C.Y., Guo, P.L., Ren, B.C.: Efficient quantum secure direct communication with complete Bell-state measurement. Quant. Eng. 3, e83 (2021) Google Scholar
Sheng, Y.B., Zhou, L., Long, G.L.: One-step quantum secure direct communication. Sci. Bull. 67, 367–374 (2022) Article Google Scholar
Zhou, L., Sheng, Y.B.: One-step device-independent quantum secure direct communication. Sci. China Phys. Mech. Astron. 65, 250311 (2022) ArticleADS Google Scholar
Ying, J.W., Zhou, L., Zhong, W., Sheng, Y.B.: Measurement-device-independent one-step quantum secure direct communication. Chin. Phys. B 31, 120303 (2022) ArticleADS Google Scholar
Wang, P., Chen, X.H., Sun, Z.W.: Semi-quantum secure direct communication against collective-dephasing noise. Quant. Inform. Process. 21, 352 (2022) ArticleADSMathSciNetMATH Google Scholar
Huang, Z.M., Rong, Z.B., Zou, X.F., He, Z.M.: Semi-quantum secure direct communication in the curved spacetime. Quant. Inform. Process. 22, 375 (2022) MathSciNetMATH Google Scholar
Dutta, A., Pathak, A.: Controlled secure direct quantum communication inspired scheme for quantum identity authentication. Quant. Inform. Process. 22, 13 (2022) ArticleADSMathSciNetMATH Google Scholar
Liu, X., Luo, Di., Lin, G.S., et al.: Fiber-based quantum secure direct communication without active polarization compensation. Sci. China Phys. Mech. Astron. 65, 120311 (2022) ArticleADS Google Scholar
Zhou, L., Xu, B.W., Zhong, W., Sheng, Y.B.: Device-independent quantum secure direct communication with single-photon sources. Phys. Rev. Appl. 19, 014036 (2023) ArticleADS Google Scholar
Hong, Y.P., Zhou, L., Zhong, W., Sheng, Y.B.: Measurement-device-independent three-party quantum secure direct communication. Quant. Inform. Process. 22, 111 (2023) ArticleADSMathSciNetMATH Google Scholar
Park, J., Kim, B., Heo, J.: Statistical fluctuation analysis for decoy-state quantum secure direct communication. Quant. Inform. Process. 22, 112 (2023) ArticleADSMathSciNetMATH Google Scholar
Yang, C.W., Lin, J., Wang, K.L., Tsai, C.W.: Cryptanalysis and improvement of a controlled quantum secure direct communication with authentication protocol based on five-particle cluster state. Quant. Inform. Process. 22, 196 (2023) ArticleADSMathSciNetMATH Google Scholar
Li, X.J., Pan, D., Long, G.L., Hanzo, L.: Single-photon-memory measurement-device-independent quantum secure direct communication-part I: its fundamentals and evolution. IEEE Commun. Lett. 27, 1055–1059 (2023) Article Google Scholar
Li, X.J., Pan, D., Long, G.L., Hanzo, L.: Single-photon-memory measurement-device-independent quantum secure direct communication-part II: a practical protocol and its secrecy capacity. IEEE Commun. Lett. 27, 1060–1064 (2023) Article Google Scholar
Sheng, Y.B., Deng, F.G.: Deterministic entanglement purification and complete nonlocal Bell-state analysis with hyperentanglement. Phys. Rev. A 81, 032307 (2010) ArticleADS Google Scholar
Wang, X.L., Cai, X.D., Su, Z.E., Chen, M.C., Wu, D., Li, L., Liu, N.L., Lu, C.Y., Pan, J.W.: Quantum teleportation of multiple degrees of freedom of a single photon. Nature 518, 516–519 (2015) ArticleADS Google Scholar
Hu, X.M., Huang, C.X., Sheng, Y.B., et al.: Long-distance entanglement purification for quantum communication. Phys. Rev. Lett. 126, 010503 (2021) ArticleADS Google Scholar
Ma, X.F., Lo, H.K.: Quantum key distribution with triggering parametric down-conversion sources. New J. Phys. 10, 073018 (2008) ArticleADS Google Scholar
Zhang, W.J., You, L.X., Li, H., Huang, J., Lv, C.L., Zhang, L., Liu, X.Y., Wu, J.J., Wang, Z., Xie, X.M.: NbN superconducting nanowire single photon detector with efficiency over 90% at 1550 nm wavelength operational at compact cryocooler temperature. Sci. China-Phys. Mech. Astron. 60, 120314 (2017) Article Google Scholar
Sheng, Y.B., Deng, F.G., Long, G.L.: Complete hyperentangled-Bell-state analysis for quantum communication. Phys. Rev. A 82, 032318 (2010) ArticleADS Google Scholar
Li, X.H., Ghose, S.: Hyperentangled Bell-state analysis and hyperdense coding assisted by auxiliary entanglement. Phys. Rev. A 96, 020303 (2017) ArticleADS Google Scholar
Gao, C.Y., Ren, B.C., Zhang, Y.X., Ai, Q., Deng, F.G.: The linear optical unambiguous discrimination of hyperentangled Bell states assisted by time bin. Ann. Phys. Berlin 531, 1900201 (2019) ArticleADSMathSciNet Google Scholar
Zhou, X.J., Liu, W.Q., Zheng, Y.B., Wei, H.R., Du, F.F.: Complete hyperentangled Bell states analysis for polarization-spatial-time-bin degrees of freedom with unity fidelity. Ann. Phys. Berlin 534, 2100509 (2022) ArticleADSMathSciNet Google Scholar
Yabushita, A., Kobayashi, T.: Spectroscopy by frequency-entangled photon pairs. Phys. Rev. A 69, 013806 (2004) ArticleADS Google Scholar
Barreiro, J.T., Langford, N.K., Peters, N.A., Kwiat, P.G.: Generation of hyperentangled photon pairs. Phys. Rev. Lett. 95, 260501 (2005) ArticleADS Google Scholar
Vallone, G., Ceccarelli, R., De Martini, F., Mataloni, P.: Hyperentanglement of two photons in three degrees of freedom. Phys. Rev. A 79, 030301 (2009) ArticleADSMathSciNetMATH Google Scholar
Liu, K., Guo, J., Cai, C., Guo, S., Gao, J.: Experimental generation of continuous-variable hyperentanglement in an optical parametric oscillator. Phys. Rev. Lett. 113, 170501 (2014) ArticleADS Google Scholar
Vergyris, P., Mazeas, F., Gouzien, E., Labonte, L., Alibart, O., Tanzilli, S., Kaiser, F.: Fibre based hyperentanglement generation for dense wavelength division multiplexing. Quant. Sci. Technol. 4, 045007 (2019) ArticleADS Google Scholar
Steinlechner, F., Ecker, S., Fink, M., Liu, B., Bavaresco, J., Huber, M., Scheidl, T., Ursin, R.: Distribution of high-dimensional entanglement via an intra-city free-space link. Nat. Commun. 8, 15971 (2017) ArticleADS Google Scholar
Hu, X.M., Xing, W.B., Liu, B.H., He, D.Y., Cao, H., Guo, Y., Zhang, C., Zhang, H., Huang, Y.F., Li, C.F., Guo, G.C.: Efficient distribution of high-dimensional entanglement through 11 km fiber. Optica 7, 738–743 (2020) ArticleADS Google Scholar
Zhang, W., Ding, D.S., Dong, M.X., Shi, S., Wang, K., Liu, S.L., Li, Y., Zhou, Z.Y., Shi, B.S., Guo, G.C.: Experimental realization of entanglement in multiple degrees of freedom between two quantum memories. Nat. Commun. 7, 13514 (2016) ArticleADS Google Scholar
Ralph, T.C., Lund, A.P.: Quantum communication measurement and computing. In: lvovsky, A. (ed.) Proceedings of the 9th international conference, pp. 155-160. AIP, New York (2009)
Gisin, N., Pironio, S., Sangouard, N.: Proposal for implementing device-independent quantum key distribution based on a heralded qubit amplifier. Phys. Rev. Lett. 105, 070501 (2010) ArticleADS Google Scholar
Xiang, G.Y., Ralph, T.C., Lund, A.P., Walk, N., Pryde, G.J.: Heralded noiseless linear amplification and distillation of entanglement. Nat. Photon. 4, 316 (2010) Article Google Scholar
Bennett, C.H., Brassard, G., Popescu, S., Schumacher, B., Smolin, J.A., Wootters, W.K.: Purification of noisy entanglement and faithful teleportation via noisy channels. Phys. Rev. Lett. 76, 722 (1996) ArticleADS Google Scholar
Pan, J.W., Simon, C., Zeilinger, A.: Entanglement purification for quantum communication. Nature 410, 1067 (2001) ArticleADS Google Scholar
Pan, J.W., Gasparonl, S., Ursin, R., Weihs, G., Zeilinger, A.: Experimental entanglement purification of arbitrary unknown states. Nature 423, 417 (2003) ArticleADS Google Scholar
Ren, B.C., Du, F.F., Deng, F.G.: Two-step hyperentanglement purification with the quantum-state-joining method. Phys. Rev. A 90, 052309 (2014) ArticleADS Google Scholar
Wang, G.Y., Liu, Q., Deng, F.G.: Hyperentanglement purification for two-photon six-qubit quantum systems. Phys. Rev. A 94, 032319 (2016) ArticleADS Google Scholar