论文标题

准确信息处理的非平衡成本

The nonequilibrium cost of accurate information processing

论文作者

Chiribella, Giulio, Meng, Fei, Renner, Renato, Yung, Man-Hong

论文摘要

在技​​术和自然界中,准确的信息处理至关重要。为了实现这一目标,任何信息处理系统都需要初始资源供应远离热平衡。在这里,我们建立了可以通过给定数量的非平衡资源来实现准确性的基本限制。该限制适用于任意信息处理任务和任意信息处理系统受量子力学定律的约束。它很容易计算,并用熵数量表示,我们将其命名为反向熵,与所考虑的信息处理任务的时间逆转相关。所有确定性的经典计算及其所有量子扩展都可以达到限制。作为应用程序,我们建立了存储,传输,克隆和擦除信息的基本任务的非平衡和准确性之间的最佳权衡。我们的结果为设计接近最终效率限制的新设备的设计设定了一个目标,并提供了一个框架,以证明量子设备的热力学优势比其经典配料。

Accurate information processing is crucial both in technology and in nature. To achieve it, any information processing system needs an initial supply of resources away from thermal equilibrium. Here we establish a fundamental limit on the accuracy achievable with a given amount of nonequilibrium resources. The limit applies to arbitrary information processing tasks and arbitrary information processing systems subject to the laws of quantum mechanics. It is easily computable and is expressed in terms of an entropic quantity, which we name reverse entropy, associated to a time reversal of the information processing task under consideration. The limit is achievable for all deterministic classical computations and for all their quantum extensions. As an application, we establish the optimal tradeoff between nonequilibrium and accuracy for the fundamental tasks of storing, transmitting, cloning, and erasing information. Our results set a target for the design of new devices approaching the ultimate efficiency limit, and provide a framework for demonstrating thermodynamical advantages of quantum devices over their classical counterparts.

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