Reference-frame-independent Quantum secure direct communication
Jia-Wei Ying, Shi-Pu Gu, Xing-Fu Wang, Wei Zhong, Ming-Ming Du, Xi-Yun Li, Shu-Ting Shen, An-Lei Zhang, Lan Zhou, Yu-Bo Sheng

TL;DR
This paper introduces a reference-frame-independent quantum secure direct communication protocol that maintains security without continuous calibration, significantly extending communication distances in mobile scenarios.
Contribution
The paper proposes a novel RFI QSDC protocol that reduces calibration requirements and enhances robustness against reference frame misalignments, with optimized performance over traditional methods.
Findings
Achieves secure communication over 27.875 km at 10 dB attenuation.
Extends maximum transmission distance by approximately 150% compared to single-photon QSDC.
Provides a security framework incorporating a β-independent parameter C.
Abstract
Current quantum secure direct communication (QSDC) protocols guarantee communication security by estimating the error rates of photons in the X and Z bases. This take the reference frame calibration between communicating parties as a necessary prerequisite. However, in mobile communications scenarios, achieving continuous and accurate reference frame calibration poses significant challenges. To address this issue, this paper proposes a reference-frame-independent (RFI) QSDC protocol. This protocol only requires ensuring the calibration accuracy of one direction of the reference frame, while allowing a misalignment angle in the other two directions. To improve the protocol's robustness against reference frame fluctuations, we introduce a -independent parameter C into the security analysis framework and rederive the protocol's security bounds. Additionally, we construct a…
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum Mechanics and Applications · Molecular Communication and Nanonetworks
