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来自噪声存储的密码学。

Cryptography from noisy storage.

作者信息

Wehner Stephanie, Schaffner Christian, Terhal Barbara M

机构信息

CWI, Kruislaan 413, 1098 SJ Amsterdam, The Netherlands.

出版信息

Phys Rev Lett. 2008 Jun 6;100(22):220502. doi: 10.1103/PhysRevLett.100.220502. Epub 2008 Jun 5.

Abstract

We show how to implement cryptographic primitives based on the realistic assumption that quantum storage of qubits is noisy. We thereby consider individual-storage attacks; i.e., the dishonest party attempts to store each incoming qubit separately. Our model is similar to the model of bounded-quantum storage; however, we consider an explicit noise model inspired by present-day technology. To illustrate the power of this new model, we show that a protocol for oblivious transfer is secure for any amount of quantum-storage noise, as long as honest players can perform perfect quantum operations. Our model also allows us to show the security of protocols that cope with noise in the operations of the honest players and achieve more advanced tasks such as secure identification.

摘要

我们展示了如何基于量子比特的量子存储存在噪声这一现实假设来实现密码原语。因此,我们考虑个体存储攻击;即,不诚实的一方试图分别存储每个传入的量子比特。我们的模型类似于有界量子存储模型;然而,我们考虑了一个受当今技术启发的显式噪声模型。为了说明这个新模型的强大之处,我们表明,只要诚实的参与者能够执行完美的量子操作,不经意传输协议对于任何量的量子存储噪声都是安全的。我们的模型还使我们能够证明那些应对诚实参与者操作中的噪声并实现更高级任务(如安全身份识别)的协议的安全性。

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