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Environment-assisted bosonic quantum communications

机译:环境辅助博源量子通信

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We consider a quantum relay that is used by two parties to perform several continuous-variable protocols of quantum communication, from entanglement distribution (swapping and distillation) to quantum teleportation, and quantum key distribution. The theory of these protocols is suitably extended to a non-Markovian model of decoherence characterized by correlated Gaussian noise in the bosonic environment. In the worst-case scenario where bipartite entanglement is completely lost at the relay, we show that the various protocols can be reactivated by the assistance of classical (separable) correlations in the environment. In fact, above a critical amount, these correlations are able to guarantee the distribution of a weaker form of entanglement (quadripartite), which can be localized by the relay into a stronger form (bipartite) that is exploitable by the parties. Our findings are confirmed by a proof-of-principle experiment where we show, for the first time, that memory effects in the environment can drastically enhance the performance of a quantum relay, well beyond the single-repeater bound for quantum and private communications.
机译:我们考虑由两方使用的量子继电器,从缠结分布(交换和蒸馏)和量子密钥分布,从纠缠分布(交换和蒸馏)和量子密钥分布来执行几个连续变量协议。这些方案的理论适当地延伸到非马术模型的非马术模型,其特征在于络络环境中的高斯噪声。在继电器中完全丢失的最坏情况下,我们表明,各种协议可以通过在环境中经典(可分离的)相关的帮助来重新激活。实际上,高于临界量,这些相关性能够保证较弱形式的缠结形式(四肢标的),其可以通过继电器定位成各方利用的更强大的形式(二分钟)。我们的调查结果通过了原则上的实验证实,我们首次展示了环境中的内存效应可以大大提高量子继电器的性能,远远超出量子和私人通信的单反中继器。

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