This study proposes a multiparty mediated quantum secret sharing (MQSS) protocol that allows n restricted quantum users to share a secret via the assistance of a dishonest third-party (TP) with full quantum capabilities. Under the premise that a restricted quantum user can only perform the Hadamard transformation and the Z-basis measurement, the proposed MQSS protocol has addressed two common challenges in the existing semi-quantum secret sharing protocols: (1) the dealer must have full quantum capability, and (2) the classical users must equip with the wavelength quantum filter and the photon number splitters (PNS) to detect the Trojan horse attacks. The security analysis has also delivered proof to show that the proposed MQSS protocol can avoid the collective attack, the collusion attack, and the Trojan horse attacks. In addition, the proposed MQSS protocol is more efficient than the existing SQSS protocols due to the restricted quantum users can only equip with two quantum operations, and the qubits are transmitted within a shorter distance.
翻译:这项研究提出了多党调解量子秘密共享协议,允许受限量子用户通过完全量子能力的不诚实第三方(TP)协助分享一个秘密,前提是受限量子用户只能进行哈达马德转化和Z基质测量,拟议的量子共享协议解决了现有半量子秘密共享协议的两个共同挑战:(1) 交易商必须具备完全量子能力,(2) 古典用户必须配备波长量子过滤器和光子数分解器,以探测特洛伊马袭击。安全分析还证明,拟议的量子用户可以避免集体袭击、串通袭击和特洛伊马袭击。此外,由于受限量子用户只能配备两种量子操作,拟议的质子共享协议比现有的SQSS协议效率更高,而且昆虫的传输距离较短。