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Measurement-device-independent mutual quantum entity authentication

Authors
Choi, Ji-WoongKang, Min-SungPark, Chang HoonYang, Hyung-JinHan, Sang-Wook
Issue Date
Apr-2021
Publisher
SPRINGER
Keywords
Quantum entity authentication; Quantum hacking; Measurement-device-independent; Impersonation attack
Citation
QUANTUM INFORMATION PROCESSING, v.20, no.4
Indexed
SCIE
SCOPUS
Journal Title
QUANTUM INFORMATION PROCESSING
Volume
20
Number
4
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/128350
DOI
10.1007/s11128-021-03093-1
ISSN
1570-0755
Abstract
Quantum entity authentication (QEA) based on security guaranteed by the laws of physics is the first and most important step for secure communication under the threat of a quantum adversary. QEA theoretically provides unconditional security; however, there is a threat of quantum hacking owing to imperfection of measurement devices in the actual implementation. The proposed measurement-device-independent (MDI) mutual quantum entity authentication (MQEA) scheme guarantees its security under any quantum attacks on measuring devices that have been reported. Using the MDI architecture in our scheme, the third party can only know the correlation of the transmitted qubits through the Bell state measurement, and it cannot obtain the secret key information. In order to confirm the security of the proposed scheme, we present a security analysis of secret key information that is pre-shared among legitimate users, and we analyze Eve's impersonation attack. Furthermore, we compare the MDI MQEA with other existing QEA schemes
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College of Science and Technology > Semiconductor Physics in Division of Display and Semiconductor Physics > 1. Journal Articles

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