论文标题
一般量子伯努利工厂:框架分析和实验
General Quantum Bernoulli Factory: Framework Analysis and Experiments
论文作者
论文摘要
对量子优势的不懈追求导致发现了量子增强的随机处理,称为量子bernoulli工厂(QBF)。这种量子增强的过程可以通过随时可用的实验资源来表明其优先级在相应的经典过程中,因此在近期中,它可能能够加速经典的Bernoulli工厂的应用,例如广泛使用的采样算法。在这项工作中,我们提供QBF的框架分析。我们在此过程中彻底分析了量子状态的演变,发现了可构造量子状态的场结构。我们的框架分析表明,自然而然地,以前的作品可以描述为该框架的特定实例。然后,作为原理的证明,我们通过纠缠的两光子源和可重新配置的光子逻辑在实验中证明了该框架,并通过经典的实例显示了QBF比经典模型的优势。这些结果可能会刺激在更广泛的任务及其潜在应用中发现量子随机处理的优势。
The unremitting pursuit for quantum advantages gives rise to the discovery of a quantum-enhanced randomness processing named quantum Bernoulli factory (QBF). This quantum enhanced process can show its priority over the corresponding classical process through readily available experimental resources, thus in the near term it may be capable of accelerating the applications of classical Bernoulli factories, such as the widely used sampling algorithms. In this work, we provide the framework analysis of the QBF. We thoroughly analyze the quantum state evolution in this process, discovering the field structure of the constructible quantum states. Our framework analysis shows that naturally, the previous works can be described as specific instances of this framework. Then, as a proof of principle, we experimentally demonstrate this framework via an entangled two-photon source along with a reconfigurable photonic logic, and show the advantages of the QBF over the classical model through a classically infeasible instance. These results may stimulate the discovery of advantages of the quantum randomness processing in a wider range of tasks, as well as its potential applications.