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Secure device-independent quantum key distribution with causally independent measurement devices

机译:使用因果独立的测量设备来保护与设备无关的量子密钥分发

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摘要

Device-independent quantum key distribution (QKD) aims to provide key distribution schemes, the security of which is based on the laws of quantum physics, but which does not require any assumptions about the internal working of the devices used in the protocol. This strong form of security is possible only when using correlations that violate a Bell inequality. Here, we provide a general security proof for a large class of protocols in a model in which the raw key is generated by independent measurements. This independence condition may be justifiable in several implementations and is necessarily satisfied when the raw key is generated by N separate pairs of devices. Our work shows that device-independent QKD is possible with key rates comparable to those of standard schemes. © 2011 Macmillan Publishers Limited. All rights reserved.
机译:与设备无关的量子密钥分发(QKD)旨在提供密钥分发方案,其安全性基于量子物理学定律,但不需要对协议中使用的设备的内部工作进行任何假设。仅当使用违反Bell不等式的相关性时,这种强大的安全性形式才有可能。在此,我们为模型中的大型协议提供了通用的安全证明,在该模型中,原始密钥是通过独立的测量生成的。这种独立性条件在几种实施方式中可能是合理的,并且当原始密钥由N个单独的设备对生成时必须满足。我们的工作表明,与标准方案的密钥率相比,与设备无关的QKD是可能的。 ©2011 Macmillan Publishers Limited。版权所有。

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