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  5. Authenticated Semi-Quantum Key Distribution Protocol Based on W States
 
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Authenticated Semi-Quantum Key Distribution Protocol Based on W States

Journal
Sensors
Journal Volume
22
Journal Issue
13
Start Page
4998
ISSN
1424-8220
Date Issued
2022-07-02
Author(s)
Hung-Wen Wang
Chia-Wei Tsai  
資訊工程系  
Jason Lin
Chun-Wei Yang
DOI
10.3390/s22134998
URI
https://nutcir-lib.nutc.edu.tw/handle/123456789/249
Abstract
<jats:p>In 2019, Wen et al. proposed authenticated semi-quantum key distribution (ASQKD) for identity and message using the teleportation of W states and GHZ-like states without pre-shared keys. However, the ASQKD protocol presents a vital issue in the teleportation of W states owing to its inappropriate design. Bob recovers the teleported W states without obtaining the position of the corresponding photons and then returns the recovered photons back to Alice. Hence, the teleportation of W states in Wen et al.’s ASQKD protocol was malfunctioning. Moreover, Wen et al.’s ASQKD protocol requires quantum memory, which strongly disobeys the definition of semi-quantum proposed by Boyer et al. Therefore, in this study, we discover the flaws of Wen et al.’s ASQKD protocol and propose an authenticated semi-quantum key distribution protocol. When compared to Wen et al.’s ASQKD protocol, the proposed ASQKD protocol has the following advantages: legal semi-quantum environment (i.e., does not require quantum memory), reduced quantum hardware requirement (i.e., based only on W states), does not involve classical cryptography (i.e., the hash function), and provided 1.6 times higher qubit efficiency.</jats:p>
Publisher
MDPI AG
Type
journal-article
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