This paper unifiedly addresses two kinds of key quantum secure tasks, i.e., quantum versions of secret sharing (SS) and symmetric private information retrieval (SPIR) by using multi-target monotone span program (MMSP), which characterizes the classical linear protocols of SS and SPIR. SS has two quantum extensions; One is the classical-quantum (CQ) setting, in which the secret to be sent is classical information and the shares are quantum systems. The other is the quantum-quantum (QQ) setting, in which the secret to be sent is a quantum state and the shares are quantum systems. The relation between these quantum protocols and MMSP has not been studied sufficiently. We newly introduce the third setting, i.e., the entanglement-assisted (EA) setting, which is defined by modifying the CQ setting with allowing prior entanglement between the dealer and the end-user who recovers the secret by collecting the shares. Showing that the linear version of SS with the EA setting is directly linked to MMSP, we characterize linear quantum versions of SS with the CQ ad QQ settings via MMSP. Further, we introduce the EA setting of SPIR, which is shown to link to MMSP. In addition, we discuss the quantum version of maximum distance separable codes.
翻译:本文统一处理两类关键量子安全任务,即:秘密共享和对称私人信息检索的量子版本(SS)和对称私人信息检索(SPIR),使用多目标单体宽度程序(MMSP),这是SS和SPIR经典线性协议的特点。SS有两个量子扩展;一个是古典量子设置,发送的秘密是古典信息,股份是量子系统。另一个是量子设置,其中发送的秘密是量子状态,股份是量子系统。我们对这些量子协议和MSP之间的关系没有进行充分研究。我们新引入了第三个设置,即纠缠辅助(EA)的设置,其定义是修改CQ设置,允许交易商和通过收集股份而恢复秘密的最终用户之间事先纠缠不休。显示,SIS与EA设置的线性版本与量子状态是量子系统。我们用SSS的线性量子版本与CQ adQ设置的关系没有得到充分研究。我们新引入了第三个设置,即缠绕式(EA)MSP的距离,我们又引入了ES的S-Clead CD-deal recal recal) 。