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Enhancing Privacy with Quantum Networks

机译:使用量子网络增强隐私

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摘要

Using quantum networks to distribute symmetric keys has become a usable and commercial technology available under limitations that are acceptable in many application scenarios. The fact that the security is implemented directly at the hardware level, and moreover, relies on the laws of physics instead of conjectured hardness assumptions, justifies the use of quantum security in many cases. Limitations include 100 km communication range and installation of quantum channels between each pair of users of the network. Presently, with the current lack of trust in commercial security solutions, mostly due to the Snowden crisis, there is the need to improve such solutions. In this paper we discuss how quantum networks can be used to setup secure multiparty computation (SMC), allowing for instance for private data mining, electronic elections among other security functionalities. SMC relies mostly on establishing an efficient oblivious transfer protocol. We present a bit-string quantum oblivious transfer protocol based on single-qubit rotations that can be implemented with current technology based on optics and whose security relies only on the laws of physics.
机译:使用量子网络分配对称密钥已成为在许多应用方案中可接受的限制下可用的可用和商业技术。安全性在硬件级别直接实施的事实,而且依赖于物理学的定律而不是猜测的硬度假设,证明了许多情况下的量子安全性的使用。限制包括100km通信范围和网络之间的每对用户之间的量子通道安装。目前,随着目前对商业安全解决方案的信任缺乏信任,主要是由于雪上危机,有必要改进此类解决方案。在本文中,我们讨论量子网络如何用于设置安全多方计算(SMC),允许私有数据挖掘,其他安全功能之间的电子选举。 SMC主要依赖建立高效的令人沮丧的转移方案。我们介绍了一种基于单态旋转的位串量子令人沮丧的转移协议,可以基于光学基于光学系统的当前技术实现,其安全性仅依赖于物理定律。

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