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完全不可信的量子比特承诺和掷硬币。

Fully distrustful quantum bit commitment and coin flipping.

机构信息

Laboratoire d'Information Quantique, Université Libre de Bruxelles, Bruxelles, Belgium.

出版信息

Phys Rev Lett. 2011 Jun 3;106(22):220501. doi: 10.1103/PhysRevLett.106.220501. Epub 2011 Jun 1.

Abstract

In the distrustful quantum cryptography model the parties have conflicting interests and do not trust one another. Nevertheless, they trust the quantum devices in their labs. The aim of the device-independent approach to cryptography is to do away with the latter assumption, and, consequently, significantly increase security. It is an open question whether the scope of this approach also extends to protocols in the distrustful cryptography model, thereby rendering them "fully" distrustful. In this Letter, we show that for bit commitment-one of the most basic primitives within the model-the answer is positive. We present a device-independent (imperfect) bit-commitment protocol, where Alice's and Bob's cheating probabilities are ≃0.854 and 3/4, which we then use to construct a device-independent coin flipping protocol with bias ≲0.336.

摘要

在不信任的量子密码学模型中,各方存在利益冲突,互不信任。然而,他们信任实验室中的量子设备。密码学的设备独立方法的目的是消除后一种假设,从而显著提高安全性。一个悬而未决的问题是,这种方法的范围是否也扩展到不信任的密码学模型中的协议,从而使它们“完全”不信任。在这封信中,我们表明,对于位承诺——模型中最基本的原语之一——答案是肯定的。我们提出了一个设备独立的(不完美的)位承诺协议,其中爱丽丝和鲍勃的作弊概率分别约为 0.854 和 3/4,我们随后使用该协议构建了一个具有 ≲0.336 偏差的设备独立硬币翻转协议。

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