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Experimental demonstration of quantum advantage for one-way communication complexity surpassing best-known classical protocol

机译:单向通信复杂性超越最知名的经典协议的量子优势的实验证明

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Demonstrating a quantum advantage with currently available experimental systems is of utmost importance in quantum information science. While this remains elusive for quantum computation, the field of communication complexity offers the possibility to already explore and showcase this advantage for useful tasks. Here, we define such a task, the Sampling Matching problem, which is inspired by the Hidden Matching problem and features an exponential gap between quantum and classical protocols in the one-way communication model. Our problem allows by its conception a photonic implementation based on encoding in the phase of coherent states of light, the use of a fixed size linear optic circuit, and single-photon detection. This enables us to demonstrate in a proof-of-principle experiment an advantage in the transmitted information resource over the best known classical protocol, something impossible to reach for the original Hidden Matching problem. Our demonstration has implications in quantum verification and cryptographic settings.
机译:用目前可用的实验系统展示量子优势在量子信息科学中至关重要。虽然这仍然难以满足量子计算,但通信复杂性领域提供了已经探索和展示了这些优势以实现有用的任务。这里,我们定义这样的任务,采样匹配问题,其受到隐藏匹配问题的启发,并且在单向通信模型中具有昆腾和经典协议之间的指数间隙。我们的问题允许其概念基于光子的光子实现在光的相干状态的相位中,使用固定尺寸的线性光学电路和单光子检测。这使我们能够在原则上展示在最佳已知的经典协议上的发射信息资源中的优势,不可能达到原始隐藏的匹配问题。我们的演示在量子验证和加密设置中具有含义。

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