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Experimental quantum reading with photon counting

机译:实验量子读数与光子计数

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摘要

The final goal of quantum hypothesis testing is to achieve quantum advantage over all possible classical strategies. In the protocol of quantum reading, this is achieved for information retrieval from an optical memory, whose generic cell stores a bit of information in two possible lossy channels. We show, theoretically and experimentally, that quantum advantage is obtained by practical photon-counting measurements combined with a simple maximum-likelihood decision. In particular, we show that this receiver combined with an entangled two-mode squeezed vacuum source is able to outperform any strategy based on statistical mixtures of coherent states for the same mean number of input photons. Our experimental findings demonstrate that quantum entanglement and simple optics are able to enhance the readout of digital data, paving the way to real applications of quantum reading and with potential applications for any other model that is based on the binary discrimination of bosonic loss.
机译:量子假设检测的最终目标是通过所有可能的古典策略实现量子优势。 在量子读取协议中,这是为了从光学存储器检索的信息检索,其通用小区在两个可能的有损信道中存储一点信息。 我们在理论和实验中示出了,通过实际光子计数测量与简单的最大似然决定结合而获得量子优势。 特别地,我们表明该接收器与缠绕的双模挤压真空源相结合能够基于相干状态的统计混合物来优于与相同的输入光子数量的统计混合物更优于任何策略。 我们的实验结果表明,量子纠缠和简单的光学性能能够增强数字数据的读数,铺平了量子读取的真实应用以及基于振震损失的二进制辨别的任何其他模型的潜在应用。

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