论文标题

可证明安全的对称私人信息检索量子密码学

Provably-secure symmetric private information retrieval with quantum cryptography

论文作者

Kon, Wen Yu, Lim, Charles Ci Wen

论文摘要

私人信息检索(PIR)是一个提供用户隐私的数据库查询协议,因为用户可以学习其感兴趣的数据库的特定条目,但是他的查询将隐藏在数据中心中。对称的私人信息检索(SPER)通过提供数据库隐私,在该数据库中无法学习数据库的任何其他条目。具有多个数据库的无条件安全的SPER解决方案是经典已知的,但是不现实的,因为它们需要双方之间的长期共享秘密密钥,以确保协议中的安全通信和共享随机性。在这里,我们建议使用量子密钥分布(QKD)代替实施实现,这既可以实现安全的通信和共享的随机性要求。我们证明QKD保持了SPIR协议的安全性,并且它也可以防止任何外部窃听器。我们还展示了如何使用两个数据库SPIR协议的示例与测量设备无关QKD生成的键。通过关键利率计算,我们表明,使用当前QKD技术在大都市级别上可行的实施是可行的。

Private information retrieval (PIR) is a database query protocol that provides user privacy, in that the user can learn a particular entry of the database of his interest but his query would be hidden from the data centre. Symmetric private information retrieval (SPIR) takes PIR further by additionally offering database privacy, where the user cannot learn any additional entries of the database. Unconditionally secure SPIR solutions with multiple databases are known classically, but are unrealistic because they require long shared secret keys between the parties for secure communication and shared randomness in the protocol. Here, we propose using quantum key distribution (QKD) instead for a practical implementation, which can realise both the secure communication and shared randomness requirements. We prove that QKD maintains the security of the SPIR protocol and that it is also secure against any external eavesdropper. We also show how such a classical-quantum system could be implemented practically, using the example of a two-database SPIR protocol with keys generated by measurement device-independent QKD. Through key rate calculations, we show that such an implementation is feasible at the metropolitan level with current QKD technology.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源