Cite this article:
Xue-Liang Zhao, Jun-Lin Li, Peng-Hao Niu, Hong-Yang Ma, Dong Ruan. Two-step quantum secure direct communication scheme with frequency codingJ. Chin. Phys. B, 2017, 26(3): 030302.
| Xue-Liang Zhao, Jun-Lin Li, Peng-Hao Niu, Hong-Yang Ma, Dong Ruan. Two-step quantum secure direct communication scheme with frequency codingJ. Chin. Phys. B, 2017, 26(3): 030302. |
Two-step quantum secure direct communication scheme with frequency coding
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Abstract
Quantum secure direct communication (QSDC) is an important branch of quantum cryptography. It can transmit secret information directly without establishing a key first, unlike quantum key distribution which requires this precursory event. Here we propose a QSDC scheme by applying the frequency coding technique to the two-step QSDC protocol, which enables the two-step QSDC protocol to work in a noisy environment. We have numerically simulated the performance of the protocol in a noisy channel, and the results show that the scheme is indeed robust against channel noise and loss. We also give an estimate of the channel noise upper bound. -
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