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量子涨落阻碍接近兰道尔极限的有限时间信息擦除。

Quantum Fluctuations Hinder Finite-Time Information Erasure near the Landauer Limit.

作者信息

Miller Harry J D, Guarnieri Giacomo, Mitchison Mark T, Goold John

机构信息

Department of Physics and Astronomy, The University of Manchester, Manchester M13 9PL, United Kingdom.

School of Physics, Trinity College Dublin, College Green, Dublin 2, Ireland.

出版信息

Phys Rev Lett. 2020 Oct 16;125(16):160602. doi: 10.1103/PhysRevLett.125.160602.

Abstract

Information is physical but information is also processed in finite time. Where computing protocols are concerned, finite-time processing in the quantum regime can dynamically generate coherence. Here we show that this can have significant thermodynamic implications. We demonstrate that quantum coherence generated in the energy eigenbasis of a system undergoing a finite-time information erasure protocol yields rare events with extreme dissipation. These fluctuations are of purely quantum origin. By studying the full statistics of the dissipated heat in the slow-driving limit, we prove that coherence provides a non-negative contribution to all statistical cumulants. Using the simple and paradigmatic example of single bit erasure, we show that these extreme dissipation events yield distinct, experimentally distinguishable signatures.

摘要

信息是物理性的,但信息也是在有限时间内被处理的。就计算协议而言,量子体系中的有限时间处理能够动态地产生相干性。在此我们表明,这可能具有重大的热力学意义。我们证明,在经历有限时间信息擦除协议的系统的能量本征基中产生的量子相干性会导致具有极端耗散的罕见事件。这些涨落纯粹源于量子。通过研究慢驱动极限下耗散热量的完整统计特性,我们证明相干性对所有统计累积量都有非负贡献。利用单比特擦除这个简单且典型的例子,我们表明这些极端耗散事件会产生独特的、实验上可区分的特征。

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