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炽热的时域超材料。

Incandescent temporal metamaterials.

作者信息

Vázquez-Lozano J Enrique, Liberal Iñigo

机构信息

Department of Electrical, Electronic and Communications Engineering, Institute of Smart Cities (ISC), Universidad Pública de Navarra (UPNA), 31006, Pamplona, Spain.

出版信息

Nat Commun. 2023 Aug 1;14(1):4606. doi: 10.1038/s41467-023-40281-2.

Abstract

Regarded as a promising alternative to spatially shaping matter, time-varying media can be seized to control and manipulate wave phenomena, including thermal radiation. Here, based upon the framework of macroscopic quantum electrodynamics, we elaborate a comprehensive quantum theoretical formulation that lies the basis for investigating thermal emission effects in time-modulated media. Our theory unveils unique physical features brought about by time-varying media: nontrivial correlations between fluctuating electromagnetic currents at different frequencies and positions, thermal radiation overcoming the black-body spectrum, and quantum vacuum amplification effects at finite temperature. We illustrate how these features lead to striking phenomena and innovative thermal emitters, specifically, showing that the time-modulation releases strong field fluctuations confined within epsilon-near-zero (ENZ) bodies, and that, in turn, it enables a narrowband (partially coherent) emission spanning the whole range of wavevectors, from near to far-field regimes.

摘要

时变介质被视为对物质进行空间整形的一种有前景的替代方案,可用于控制和操纵包括热辐射在内的波动现象。在此,基于宏观量子电动力学框架,我们阐述了一个全面的量子理论公式,该公式为研究时间调制介质中的热发射效应奠定了基础。我们的理论揭示了时变介质带来的独特物理特性:不同频率和位置处波动电磁电流之间的非平凡相关性、超越黑体光谱的热辐射以及有限温度下的量子真空放大效应。我们说明了这些特性如何导致引人注目的现象和创新的热发射器,具体而言,表明时间调制会释放限制在近零介电常数(ENZ)物体内的强场波动,进而能够实现跨越从近场到远场整个波矢范围的窄带(部分相干)发射。

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