Tight Analysis of a One-Shot Quantum Secret Sharing Scheme

Fuente: arXiv
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Main Authors: Majhi, Santanu, Bera, Debajyoti
Format: Preprint
Published: 2025
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author Majhi, Santanu
Bera, Debajyoti
author_facet Majhi, Santanu
Bera, Debajyoti
contents Quantum communication protocols can be designed to detect eavesdropping attacks, something that classical technologies are unable to do since classical information can be replicated in a non-destructive manner. Eavesdropping detection is, therefore, a standard feature in all the proposed quantum secret sharing (QSS) protocols. However, detection is often done by a statistical analysis of the outcome of multiple decoy rounds, and this causes a significant communication overhead. In our quest for a QSS protocol that works even in one round, we came across a one-shot secret-sharing framework proposed by Hsu (Phys. Rev. A 2003). The scheme was designed to work over public channels without requiring multiple rounds to detect eavesdropping but it lacked a thorough security analysis. In this work we present a complete characterisation of the correctness and security properties of this framework. Our characterisation allowed us to improve the original protocol to be more resistant towards eavesdropping. However, we prove a couple of impossibility results, including one that dictates that complete security against an eavesdropper is not possible in this framework. Thus, it is not possible to design a perfect QSS using this framework.
format Preprint
id arxiv_https___arxiv_org_abs_2511_04399
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Tight Analysis of a One-Shot Quantum Secret Sharing Scheme
Majhi, Santanu
Bera, Debajyoti
Quantum Physics
Cryptography and Security
Quantum communication protocols can be designed to detect eavesdropping attacks, something that classical technologies are unable to do since classical information can be replicated in a non-destructive manner. Eavesdropping detection is, therefore, a standard feature in all the proposed quantum secret sharing (QSS) protocols. However, detection is often done by a statistical analysis of the outcome of multiple decoy rounds, and this causes a significant communication overhead. In our quest for a QSS protocol that works even in one round, we came across a one-shot secret-sharing framework proposed by Hsu (Phys. Rev. A 2003). The scheme was designed to work over public channels without requiring multiple rounds to detect eavesdropping but it lacked a thorough security analysis. In this work we present a complete characterisation of the correctness and security properties of this framework. Our characterisation allowed us to improve the original protocol to be more resistant towards eavesdropping. However, we prove a couple of impossibility results, including one that dictates that complete security against an eavesdropper is not possible in this framework. Thus, it is not possible to design a perfect QSS using this framework.
title Tight Analysis of a One-Shot Quantum Secret Sharing Scheme
topic Quantum Physics
Cryptography and Security
url https://arxiv.org/abs/2511.04399