Chakraborty Kaushik, Chailloux André, Leverrier Anthony
Inria, EPI SECRET, B.P. 105, 78153 Le Chesnay Cedex, France.
Phys Rev Lett. 2015 Dec 18;115(25):250501. doi: 10.1103/PhysRevLett.115.250501. Epub 2015 Dec 17.
We consider the recent relativistic bit commitment protocol introduced by Lunghi et al. [Phys. Rev. Lett. 115, 030502 (2015)] and present a new security analysis against classical attacks. In particular, while the initial complexity of the protocol scales double exponentially with the commitment time, our analysis shows that the correct dependence is only linear. This has dramatic implications in terms of implementation: in particular, the commitment time can easily be made arbitrarily long, by only requiring both parties to communicate classically and perform efficient classical computation.
我们考虑了Lunghi等人[《物理评论快报》115, 030502 (2015)]最近提出的相对论性比特承诺协议,并针对经典攻击给出了一种新的安全性分析。特别地,虽然该协议的初始复杂度随承诺时间呈双指数增长,但我们的分析表明正确的依赖关系只是线性的。这在实现方面具有重大影响:具体而言,只需要求双方进行经典通信并执行高效的经典计算,承诺时间就可以很容易地任意延长。