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Measurement-based noiseless linear amplification for quantum communication

机译:用于量子通信的基于测量的无噪声线性放大

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摘要

Entanglement distillation is an indispensable ingredient in extended quantum communication networks. Distillation protocols are necessarily non-deterministic and require advanced experimental techniques such as noiseless amplification. Recently, it was shown that the benefits of noiseless amplification could be extracted by performing a post-selective filtering of the measurement record to improve the performance of quantum key distribution. We apply this protocol to entanglement degraded by transmission loss of up to the equivalent of 100 km of optical fibre. We measure an effective entangled resource stronger than that achievable by even a maximally entangled resource passively transmitted through the same channel. We also provide a proof-of-principle demonstration of secret key extraction from an otherwise insecure regime. The measurement-based noiseless linear amplifier offers two advantages over its physical counterpart: ease of implementation and near-optimal probability of success. It should provide an effective and versatile tool for a broad class of entanglement-based quantum communication protocols.
机译:纠缠蒸馏是扩展的量子通信网络中必不可少的成分。蒸馏方案不一定是确定性的,需要先进的实验技术,例如无噪声放大。最近,研究表明,可以通过对测量记录执行事后选择过滤来改善量子密钥分配的性能,从而提取出无噪声放大的好处。我们将此协议应用于因传输损耗而造成的纠缠,其传输损耗最高可达100 km的光纤。我们测量的有效纠缠资源比通过同一通道被动传输的最大纠缠资源还要强大。我们还提供了从不安全的机制中秘密密钥提取的原理证明。基于测量的无噪声线性放大器与物理放大器相比具有两个优点:易于实现和成功的最佳概率。它应该为各种基于纠缠的量子通信协议提供有效且通用的工具。

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