Efficient Arbitrated Quantum Digital Signature with Multi-Receiver Verification

Fuente: arXiv
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Autori principali: Xiong, Siyu, Tang, Bangying, Han, Hui, Huang, Jinquan, Bai, Mingqiang, Li, Fangzhao, Mo, Wanrong Yu Zhiwen, Liu, Bo
Natura: Preprint
Pubblicazione: 2024
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author Xiong, Siyu
Tang, Bangying
Han, Hui
Huang, Jinquan
Bai, Mingqiang
Li, Fangzhao
Mo, Wanrong Yu Zhiwen
Liu, Bo
author_facet Xiong, Siyu
Tang, Bangying
Han, Hui
Huang, Jinquan
Bai, Mingqiang
Li, Fangzhao
Mo, Wanrong Yu Zhiwen
Liu, Bo
contents Quantum digital signature is used to authenticate the identity of the signer with information theoretical security, while providing non-forgery and non-repudiation services. In traditional multi-receiver quantum digital signature schemes without an arbitrater, the transferability of one-to-one signature is always required to achieve unforgeability, with complicated implementation and heavy key consumption. In this article, we propose an arbitrated quantum digital signature scheme, in which the signature can be verified by multiple receivers simultaneously, and meanwhile, the transferability of the signature is still kept. Our scheme can be simplified performed to various quantum secure networks, due to the proposed efficient signature calculation procedure with low secure key consumption and low computation complexity, by employing one-time universal hashing algorithm and one-time pad encryption scheme. The evaluation results show that our scheme uses at least two orders of magnitude less key than existing signature schemes with transferability when signing files of the same length with the same number of receivers and security parameter settings.
format Preprint
id arxiv_https___arxiv_org_abs_2406_07824
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Efficient Arbitrated Quantum Digital Signature with Multi-Receiver Verification
Xiong, Siyu
Tang, Bangying
Han, Hui
Huang, Jinquan
Bai, Mingqiang
Li, Fangzhao
Mo, Wanrong Yu Zhiwen
Liu, Bo
Quantum Physics
Cryptography and Security
Quantum digital signature is used to authenticate the identity of the signer with information theoretical security, while providing non-forgery and non-repudiation services. In traditional multi-receiver quantum digital signature schemes without an arbitrater, the transferability of one-to-one signature is always required to achieve unforgeability, with complicated implementation and heavy key consumption. In this article, we propose an arbitrated quantum digital signature scheme, in which the signature can be verified by multiple receivers simultaneously, and meanwhile, the transferability of the signature is still kept. Our scheme can be simplified performed to various quantum secure networks, due to the proposed efficient signature calculation procedure with low secure key consumption and low computation complexity, by employing one-time universal hashing algorithm and one-time pad encryption scheme. The evaluation results show that our scheme uses at least two orders of magnitude less key than existing signature schemes with transferability when signing files of the same length with the same number of receivers and security parameter settings.
title Efficient Arbitrated Quantum Digital Signature with Multi-Receiver Verification
topic Quantum Physics
Cryptography and Security
url https://arxiv.org/abs/2406.07824