论文标题

基于钟形状态顺序测量的新型三方量子秘密共享方案,并在量子图像共享中应用

A novel three party Quantum secret sharing scheme based on Bell state sequential measurements with application in quantum image sharing

论文作者

Musanna, Farhan, Kumar, Sanjeev

论文摘要

在这项工作中,我们提出了一个基于钟状态纠缠和顺序投影测量的量子秘密共享方案。该协议可验证$ n $方案的$ n $,并支持该协议的中止,以防各方都没有在其有效的测量结果中泄露。操作员Qubit对构成了确定要共享的经典秘密的计划的组成部分。该协议足以抵消经销商特定量子的任何窃听。该方案的实验演示是在带有后端的IBM-QE云平台上进行的,\ texttt {ibmq \ _16 \ _melbourne}和\ texttt {ibmq \ _qasm \ _simulator \ _simulator \ _v0.1.1.1.1.1.547} simulator。与一些最近的Quantum和Semi-Quantum Secret Inlectiqu相比,对该方案进行的安全分析和比较分析支持了我们对严格和有效方案的主张。

In this work, we present a quantum secret sharing scheme based on Bell state entanglement and sequential projection measurements. The protocol verifies the $n$ out of $n$ scheme and supports the aborting of the protocol in case all the parties do not divulge in their valid measurement outcomes. The operator-qubit pair forms an integral part of the scheme determining the classical secret to be shared. The protocol is robust enough to neutralize any eavesdropping on a particular qubit of the dealer. The experimental demonstration of the scheme is done on IBM-QE cloud platform with backends \texttt{IBMQ\_16\_Melbourne} and \texttt{IBMQ\_QASM\_SIMULATOR\_V0.1.547} simulator. The security analysis performed on the scheme and the comparative analysis supports our claim of a stringent and an efficient scheme as compared to some recent quantum and semi-quantum techniques of secret sharing.

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