Nonreciprocity of thermal radiation in attenuated total reflection-mediated optical waveguide

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Xin Cui, Ziheng Gu, Gaige Zheng
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引用次数: 0

Abstract

Fano resonance (FR) and the triggered nonreciprocal thermal radiation (NTR) in a Weyl semimetal (WSM)- incorporated Kretschmann configuration has been observed and analyzed. Employing the anisotropic permittivity tensor, the electromagnetic responses of the proposed layered structure have been studied, and we illustrate that FR and strong nonreciprocity is attributed to the coupling between the planar waveguide mode and surface plasmon polaritons in WSM. It is shown that absorptivity (α) is not consistent with emissivity (e) in the considered angular range, which confirms near-complete violation of Kirchhoff's law with nonmagnetic WSM. To analyze the physical origin of NTR, we performed numerical calculations for the α, e, nonreciprocity (η), as well as the magnetic field inside each layer. The compre-hensive investigation of η with regard to geometric parameters suggests great potential for the practical use of perfect absorption and NTR over a wide range of frequencies and layer thicknesses.

衰减全反射光波导中的热辐射非互易性
我们观察并分析了在韦尔半金属(WSM)与克雷奇曼(Kretschmann)构型结合的结构中发生的法诺共振(Fano resonance,FR)和触发的非互惠热辐射(Nonreciprocal thermal radiation,NTR)。我们利用各向异性的介电常数张量,研究了所提出的层状结构的电磁响应,结果表明,FR 和强非互易性归因于 WSM 中平面波导模式与表面等离子体极化子之间的耦合。研究表明,在所考虑的角度范围内,吸收率(α)与发射率(e)不一致,这证实了非磁性 WSM 几乎完全违反了基尔霍夫定律。为了分析 NTR 的物理起源,我们对每个层内的α、e、非对等性(η)以及磁场进行了数值计算。对几何参数 η 的全面研究表明,在广泛的频率和层厚度范围内,完美吸收和 NTR 的实际应用潜力巨大。
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来源期刊
Microwave and Optical Technology Letters
Microwave and Optical Technology Letters 工程技术-工程:电子与电气
CiteScore
3.40
自引率
20.00%
发文量
371
审稿时长
4.3 months
期刊介绍: Microwave and Optical Technology Letters provides quick publication (3 to 6 month turnaround) of the most recent findings and achievements in high frequency technology, from RF to optical spectrum. The journal publishes original short papers and letters on theoretical, applied, and system results in the following areas. - RF, Microwave, and Millimeter Waves - Antennas and Propagation - Submillimeter-Wave and Infrared Technology - Optical Engineering All papers are subject to peer review before publication
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