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  5. Breaking Rotational Symmetry in Supertwisted WS<sub>2</sub> Spirals via Moiré Magnification of Intrinsic Heterostrain

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Article
en
2022

Breaking Rotational Symmetry in Supertwisted WS<sub>2</sub> Spirals via Moiré Magnification of Intrinsic Heterostrain

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en
2022
Vol 22 (22)
Vol. 22
DOI: 10.1021/acs.nanolett.2c03347

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Junqiao Wu
Junqiao Wu

University of California, Berkeley

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Penghong Ci
Yuzhou Zhao
Muhua Sun
+6 more

Abstract

Twisted stacking of van der Waals materials with moiré superlattices offers a new way to tailor their physical properties via engineering of the crystal symmetry. Unlike well-studied twisted bilayers, little is known about the overall symmetry and symmetry-driven physical properties of continuously supertwisted multilayer structures. Here, using polarization-resolved second harmonic generation (SHG) microscopy, we report threefold (C3) rotational symmetry breaking in supertwisted WS2 spirals grown on non-Euclidean surfaces, contrasting the intact symmetry of individual monolayers. This symmetry breaking is attributed to a geometrical magnifying effect in which small relative strain between adjacent twisted layers (heterostrain), verified by Raman spectroscopy and multiphysics simulations, generates significant distortion in the moiré pattern. Density-functional theory calculations can explain the C3 symmetry breaking and unusual SHG response by the interlayer wave function coupling. These findings thus pave the way for further developments in the so-called "3D twistronics".

How to cite this publication

Penghong Ci, Yuzhou Zhao, Muhua Sun, Yoonsoo Rho, Yabin Chen, Costas P. Grigoropoulos, Song Jin, Xiaoguang Li, Junqiao Wu (2022). Breaking Rotational Symmetry in Supertwisted WS<sub>2</sub> Spirals via Moiré Magnification of Intrinsic Heterostrain. , 22(22), DOI: https://doi.org/10.1021/acs.nanolett.2c03347.

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Publication Details

Type

Article

Year

2022

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acs.nanolett.2c03347

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