Discovering a Wigner-like crystal and soft x-ray correlated plasmons and their couplings in a transition metal dichalcogenide

Author:

Whitcher T. J.12ORCID,Diao C.2ORCID,Fauzi A. D.12,Kwan J. W.1ORCID,Chi X.2,Naradipa M. A.12ORCID,Loh N. D.1,Breese M. B. H.12ORCID,Rusydi A.12ORCID

Affiliation:

1. Department of Physics, 2 Science Drive 3, National University of Singapore 1 , Singapore 117576, Singapore

2. Singapore Synchrotron Light Source, National University of Singapore 2 , 5 Research Link, Singapore 117603, Singapore

Abstract

Low-dimensional systems host many exotic physical properties. Using extended resonant soft x-ray scattering supported with theoretical calculations, we observe concomitantly a Wigner-like crystal in a stripe-like QHKL = (001) superlattice with surprisingly long coherence lengths and new soft x-ray correlated plasmons in WS2. A new electronic transition is found at 125 K upon cooling, which is a transition from two-dimensional ordering to three-dimensional ordering, a result of p–d hybridization anisotropy and electronic correlations. Our result shows the importance of the interplay of long-range electron–electron correlation and short-range electronic screening in determining electronics and optical properties of transition metal dichalcogenides.

Funder

Ministry of Education - Singapore

National University of Singapore

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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