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过渡金属二硫属化物单层和双层中的晶格振动模式与电子 - 声子相互作用。

Lattice vibration modes and electron-phonon interactions in monolayer bilayer of transition metal dichalcogenides.

作者信息

Menéndez-Proupin E, Morell E Suárez, Marques G E, Trallero-Giner C

机构信息

Departamento de Física Aplicada I, Escuela Politécnica Superior, Universidad de Sevilla Seville E-41011 Spain

Grupo de Simulaciones, Departamento de Física, Universidad Técnica Federico Santa María Casilla 110-V Valparaíso Chile.

出版信息

RSC Adv. 2024 Feb 9;14(8):5234-5247. doi: 10.1039/d3ra08759j. eCollection 2024 Feb 7.

Abstract

Transition metal dichalcogenides are at the center of intense scientific activity due to their promising applications, as well as the growing interest in basic research related to their electronic and dielectric properties. The layered structure of single-(ML) and two-layer (2ML) samples presents exciting features for light-matter interaction, electron transport, and electronic and optoelectronic applications. Lattice vibrations and electron-phonon interactions are essential for studying the above mentioned topics. Phonon spectra in ML and 2ML of MoX and WX (X = S, Se, and Te) families are studied using first principles calculations. A comprehensive analysis of the two-dimensional optical-phonon dispersion laws is performed, and the results illustrate the main differences between ML and 2ML for each considered semiconductor. Taking advantage of calculations, a generalization of the phenomenological Born-Huang dielectric model for long-wavelength vibrational modes around the -point of the Brillouin zone (BZ) in 2ML structures is implemented. Explicit expressions are derived for the optical phonon dispersion of in-plane and out-of-plane normal modes. The set of characteristic parameters describing each long-wavelength optical branch is resolved from a direct comparison with the exact dispersion laws provided using the first principles calculations. The long-range electron-phonon Pekar-Fröhlich (PF) interaction and intra-valley electron scattering rates at the -point of the BZ E' (LO) and E longitudinal optical oscillations are examined for the ML and 2ML structures, respectively. The non-local macroscopic screening and the coupling between the in-plane electric field and longitudinal optical mechanical oscillation, profoundly affect the PF Hamiltonian and the carrier inverse relaxation time.

摘要

过渡金属二硫属化物因其具有广阔的应用前景以及人们对与其电子和介电性质相关的基础研究兴趣日益浓厚,而处于激烈科学活动的中心。单分子层(ML)和双层(2ML)样品的层状结构在光与物质相互作用、电子输运以及电子和光电子应用方面展现出令人兴奋的特性。晶格振动和电子 - 声子相互作用对于研究上述主题至关重要。利用第一性原理计算研究了MoX和WX(X = S、Se和Te)族的ML和2ML中的声子谱。对二维光学声子色散定律进行了全面分析,结果说明了每种所考虑的半导体中ML和2ML之间的主要差异。利用这些计算,对2ML结构中布里渊区(BZ)Γ点附近长波长振动模式的唯象Born - Huang介电模型进行了推广。推导了面内和面外法向模式的光学声子色散的显式表达式。通过与第一性原理计算提供的精确色散定律直接比较,确定了描述每个长波长光学分支的特征参数集。分别研究了ML和2ML结构在BZ Γ点处的远程电子 - 声子Pekar - Fröhlich(PF)相互作用和谷内电子散射率E'(LO)和E纵向光学振荡。非局部宏观屏蔽以及面内电场与纵向光学机械振荡之间的耦合,深刻影响了PF哈密顿量和载流子逆弛豫时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c594/10854479/895036cdb762/d3ra08759j-f1.jpg

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