Optical scatterings in layered systems

IF 2.6 4区 物理与天体物理 Q2 PHYSICS, APPLIED International Journal of Modern Physics B Pub Date : 2023-10-11 DOI:10.1142/s021797922450379x
Chih-Wei Chiu, Chang-Ting Liu, Chiun-Yan Lin, Ming-Fa Lin
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Abstract

This paper presents a theoretical framework for exploring the optical properties of layered materials. The derived analytical formulas for reflectance and transmittance spectra incorporate vertical valence-state transitions and appropriate boundary conditions for finite-width bulk materials, integrated with the generalized tight-binding model to account for intrinsic interactions and external fields. The study reveals distinct structures in the spectra of multilayer graphene for different stacking layers at low energies (∼0.2–0.8[Formula: see text]eV), attributed to interband transitions at the K point. Furthermore, the high-energy part (≳5[Formula: see text]eV) highlights thickness-dependent plasmon effects characterized by unique resonance frequencies in the optical spectra. These features depend on the dimensionality, interlayer coupling, and electronic structure of the material. This work provides a deeper understanding of the optical properties of layered structures, facilitating their exploration and characterization for diverse applications.
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层状系统中的光学散射
本文提出了探索层状材料光学性质的理论框架。推导出的反射光谱和透射光谱解析公式包含了有限宽度块体材料的垂直价态跃迁和适当的边界条件,并结合广义紧密结合模型来考虑内在相互作用和外场。该研究揭示了不同堆叠层的多层石墨烯在低能(~ 0.2-0.8 eV)下的光谱结构不同,这归因于K点的带间跃迁。此外,高能部分(< 5 eV)强调了在光谱中具有独特共振频率的厚度相关的等离子体效应。这些特性取决于材料的尺寸、层间耦合和电子结构。这项工作提供了对层状结构的光学性质的更深入的了解,促进了它们的探索和表征的各种应用。
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来源期刊
International Journal of Modern Physics B
International Journal of Modern Physics B 物理-物理:凝聚态物理
CiteScore
3.70
自引率
11.80%
发文量
417
审稿时长
3.1 months
期刊介绍: Launched in 1987, the International Journal of Modern Physics B covers the most important aspects and the latest developments in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low dimensional materials. One unique feature of this journal is its review section which contains articles with permanent research value besides the state-of-the-art research work in the relevant subject areas.
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