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WSe-WS范德华异质结构中因能带折叠产生的新兴莫尔声子

Emergent Moiré Phonons Due to Zone Folding in WSe-WS Van der Waals Heterostructures.

作者信息

Chuang Hsun-Jen, Phillips Madeleine, McCreary Kathleen M, Wickramaratne Darshana, Rosenberger Matthew R, Oleshko Vladimir P, Proscia Nicholas V, Lohmann Mark, O'Hara Dante J, Cunningham Paul D, Hellberg C Stephen, Jonker Berend T

机构信息

Naval Research Laboratory, Washington, D.C.20375, United States.

Nova Research, Inc., Washington, D.C.20375, United States.

出版信息

ACS Nano. 2022 Oct 25;16(10):16260-16270. doi: 10.1021/acsnano.2c05204. Epub 2022 Oct 12.

Abstract

Bilayers of 2D materials offer opportunities for creating devices with tunable electronic, optical, and mechanical properties. In van der Waals heterostructures (vdWHs) where the constituent monolayers have different lattice constants, a moiré superlattice forms with a length scale larger than the lattice constant of either constituent material regardless of twist angle. Here, we report the appearance of moiré Raman modes from nearly aligned WSe-WS vdWHs in the range of 240-260 cm, which are absent in both monolayers and homobilayers of WSe and WS and in largely misaligned WSe-WS vdWHs. Using first-principles calculations and geometric arguments, we show that these moiré Raman modes are a consequence of the large moiré length scale, which results in zone-folded phonon modes that are Raman active. These modes are sensitive to changes in twist angle, but notably, they occur at identical frequencies for a given small twist angle away from either the 0-degree or 60-degree aligned heterostructure. Our measurements also show a strong Raman intensity modulation in the frequency range of interest, with near 0 and near 60-degree vdWHs exhibiting a markedly different dependence on excitation energy. In near 0-degree aligned WSe-WS vdWHs, a nearly complete suppression of both the moiré Raman modes and the WSe A Raman mode (∼250 cm) is observed when exciting with a 532 nm CW laser at room temperature. Temperature-dependent reflectance contrast measurements demonstrate the significant Raman intensity modulation arises from resonant Raman effects.

摘要

二维材料的双层结构为制造具有可调电子、光学和机械性能的器件提供了机会。在由具有不同晶格常数的单层组成的范德华异质结构(vdWHs)中,无论扭曲角度如何,都会形成一种莫尔超晶格,其长度尺度大于任何一种组成材料的晶格常数。在此,我们报告了在240 - 260 cm范围内,来自几乎对齐的WSe - WS vdWHs的莫尔拉曼模式的出现,而这些模式在WSe和WS的单层和同质双层以及严重错位的WSe - WS vdWHs中均不存在。通过第一性原理计算和几何论证,我们表明这些莫尔拉曼模式是莫尔长度尺度较大的结果,这导致了具有拉曼活性的区折叠声子模式。这些模式对扭曲角度的变化敏感,但值得注意的是,对于给定的远离0度或60度对齐异质结构的小扭曲角度,它们以相同的频率出现。我们的测量还表明,在感兴趣的频率范围内存在强烈的拉曼强度调制,接近0度和接近60度的vdWHs对激发能量表现出明显不同的依赖性。在接近0度对齐的WSe - WS vdWHs中,当在室温下用532 nm连续波激光激发时,观察到莫尔拉曼模式和WSe A拉曼模式(~250 cm)几乎完全被抑制。温度依赖的反射率对比度测量表明,显著的拉曼强度调制源于共振拉曼效应。

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