Quantum ($t$,$n$) Threshold Multi-Secret Sharing based on Cluster States

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Ma, Rui-Hai, Chen, Hui-Nan, Cai, Bin-Bin, Lin, Song, Zhang, Xiao-Chen
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866915287215898624
author Ma, Rui-Hai
Chen, Hui-Nan
Cai, Bin-Bin
Lin, Song
Zhang, Xiao-Chen
author_facet Ma, Rui-Hai
Chen, Hui-Nan
Cai, Bin-Bin
Lin, Song
Zhang, Xiao-Chen
contents Quantum secret sharing is an encryption technique based on quantum mechanics, which utilizes uncertainty principle to achieve security in transmission. Most protocols focus on the study of quantum ($n,n$) or ($t,n$) threshold single secret sharing. In this paper, the first quantum ($t,n$) threshold multi-secret sharing protocol based on Lagrangian interpolation and cluster states is proposed, which requires only $t$ instead of $n$ participants to reconstruct multiple quantum secrets. The protocol exploits the security properties of the cluster state to transmit shared information in two parts, quantum and classical, where the shares remain private after reconstructing quantum secrets. Meanwhile, extending the new measurement basis in cluster states enables participants to transmit quantum information without preparing particles. In the presented protocol, the dealer can be offline after sending secrets. And required quantum operations are all common quantum operations, thus the protocol is practical under the current technical conditions. It is proven to be theoretically secure against external and internal attacks by analyzing the protocol under several common external attacks and internal attacks. In addition, experiments on IMB Q prove that the protocol satisfies correctness and feasibility.
format Preprint
id arxiv_https___arxiv_org_abs_2505_09317
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum ($t$,$n$) Threshold Multi-Secret Sharing based on Cluster States
Ma, Rui-Hai
Chen, Hui-Nan
Cai, Bin-Bin
Lin, Song
Zhang, Xiao-Chen
Quantum Physics
Quantum secret sharing is an encryption technique based on quantum mechanics, which utilizes uncertainty principle to achieve security in transmission. Most protocols focus on the study of quantum ($n,n$) or ($t,n$) threshold single secret sharing. In this paper, the first quantum ($t,n$) threshold multi-secret sharing protocol based on Lagrangian interpolation and cluster states is proposed, which requires only $t$ instead of $n$ participants to reconstruct multiple quantum secrets. The protocol exploits the security properties of the cluster state to transmit shared information in two parts, quantum and classical, where the shares remain private after reconstructing quantum secrets. Meanwhile, extending the new measurement basis in cluster states enables participants to transmit quantum information without preparing particles. In the presented protocol, the dealer can be offline after sending secrets. And required quantum operations are all common quantum operations, thus the protocol is practical under the current technical conditions. It is proven to be theoretically secure against external and internal attacks by analyzing the protocol under several common external attacks and internal attacks. In addition, experiments on IMB Q prove that the protocol satisfies correctness and feasibility.
title Quantum ($t$,$n$) Threshold Multi-Secret Sharing based on Cluster States
topic Quantum Physics
url https://arxiv.org/abs/2505.09317