自由电子相干性的辐射损失:一种长程量子现象。

IF 19.4 1区 物理与天体物理 Q1 Physics and Astronomy Light, science & applications Pub Date : 2024-01-26 DOI:10.1038/s41377-023-01361-6
Cruz I Velasco, Valerio Di Giulio, F Javier García de Abajo
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引用次数: 0

摘要

量子物理学规定了小物体在微观长度尺度上相互作用时的动力学。然而,在纠缠光子之间以及低温下的原子气体和物质波中,可以观察到涉及宏观距离的量子相关性。带电粒子和扩展物体之间电磁耦合的长程性质也可能引发大距离的量子现象。在这里,我们揭示了量子力学的一种表现形式,它涉及到宏观距离,并导致与电子辐射耦合产生的自由电子干涉相关的相干性几乎完全耗尽。我们通过对与半无限金属板相互作用的双路径电子束进行严格的理论分析来说明这种无处不在的效应,发现路径间的相干性在零温度下与路径分离成比例消失,而在有限温度下呈指数消失。所研究的大距离机制源于电子与辐射模式的耦合,该耦合由材料结构的衍射辅助,但不涉及任何材料激发。除了对这一宏观量子现象的基本兴趣之外,我们的研究结果还提出了一种测量真空温度和非破坏性地感知遥远物体存在的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Radiative loss of coherence in free electrons: a long-range quantum phenomenon.

Quantum physics rules the dynamics of small objects as they interact over microscopic length scales. Nevertheless, quantum correlations involving macroscopic distances can be observed between entangled photons as well as in atomic gases and matter waves at low temperatures. The long-range nature of the electromagnetic coupling between charged particles and extended objects could also trigger quantum phenomena over large distances. Here, we reveal a manifestation of quantum mechanics that involves macroscopic distances and results in a nearly complete depletion of coherence associated with which-way free-electron interference produced by electron-radiation coupling in the presence of distant extended objects. This is a ubiquitous effect that we illustrate through a rigorous theoretical analysis of a two-path electron beam interacting with a semi-infinite metallic plate and find the inter-path coherence to vanish proportionally to the path separation at zero temperature and exponentially at finite temperature. The investigated regime of large distances originates in the coupling of the electron to radiative modes assisted by diffraction at material structures but without any involvement of material excitations. Besides the fundamental interest of this macroscopic quantum phenomenon, our results suggest an approach to measuring the vacuum temperature and nondestructively sensing the presence of distant objects.

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来源期刊
CiteScore
27.00
自引率
2.60%
发文量
331
审稿时长
20 weeks
期刊介绍: Light: Science & Applications is an open-access, fully peer-reviewed publication.It publishes high-quality optics and photonics research globally, covering fundamental research and important issues in engineering and applied sciences related to optics and photonics.
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