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Further Reading: Chapter 10 — Superdense Coding, Quantum Key Distribution, and the Communication Applications of Entanglement

  • Bennett, C. H., & Wiesner, S. J. (1992). "Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states." Physical Review Letters, 69(20), 2881.

  • Bennett, C. H., & Brassard, G. (1984). "Quantum cryptography: Public key distribution and coin tossing." Proceedings of IEEE International Conference on Computers, Systems and Signal Processing, 175-179.

  • Ekert, A. K. (1991). "Quantum cryptography based on Bell's theorem." Physical Review Letters, 67(6), 661.

  • Shor, P. W., & Preskill, J. (2000). "Simple proof of security of the BB84 quantum key distribution protocol." Physical Review Letters, 85(2), 441.

  • Scarani, V., et al. (2009). "The security of practical quantum key distribution." Reviews of Modern Physics, 81(3), 1301.

  • Wehner, S., Elkouss, D., & Hanson, R. (2018). "Quantum internet: A vision for the road ahead." Science, 362(6412), eaam9288.

  • Xu, F., Ma, X., Zhang, Q., Lo, H. K., & Pan, J. W. (2020). "Secure quantum key distribution with realistic devices." Reviews of Modern Physics, 92(2), 025002.

  • Nielsen, M. A., & Chuang, I. L. (2010). Quantum Computation and Quantum Information. Cambridge University Press. Chapter 12.

  • Lo, H. K., Curty, M., & Tamaki, K. (2014). "Secure quantum key distribution." Nature Photonics, 8(8), 596-604.

  • Lydersen, L., et al. (2010). "Hacking commercial quantum cryptography systems by tailored bright illumination." Nature Photonics, 4(10), 686-689.