Sep 20 – 25, 2026
University of Graz
Europe/Vienna timezone

Observation of the Charge Density Wave Excitonic Order Parameter in Topological Insulator Monolayer WTe2

Sep 24, 2026, 5:00 PM
15m
HS 15.13 (University of Graz)

HS 15.13

University of Graz

15 - RESOWI E, 1st floor
3) Contributed talk COND: Condensed Matter Parallel

Speaker

Iolanda Di Bernardo (Universidad Autonoma de Madrid)

Description

Strong electron–hole interactions in a semimetal or narrow-gap semiconductor may drive a ground state of condensed excitons. Monolayer WTe2 has been proposed as a host material for such an exciton condensate, but the order parameter─the key signature of a macroscopic quantum-coherent condensate─has not been observed. Here, we use Fourier-transform scanning tunneling spectroscopy (FT-STS) to study quasiparticle interference (QPI) and periodic modulations of the local density of states (LDOS) in monolayer WTe$_2$. In WTe$_2$ on graphene, in which the carrier density can be varied via back-gating, FT-STS shows QPI features in the two-dimensional (2D) bulk bands, confirming the interacting nature of the bandgap in neutral WTe$_2$ and the semimetallic nature of highly n- and p-doped WTe$_2$. We observe additional nondispersive spatial modulations in the LDOS imprinted on the topological edge mode of neutral WTe$_2$ on metallic substrates (graphene and graphite), which we interpret as the interaction of the topological edge mode with the expected charge density wave order parameter of the excitonic condensate in WTe$_2$ at low interaction strength due to screening by the metallic substrates.

Authors

Amadeo L. Vazquez de Parga Amit Kumar Bent Weber Hsin Lin Iolanda Di Bernardo (Universidad Autonoma de Madrid) Joan Ripoll-Sau Liam Watson (Monash University) Manuela Garnica Mark Edmonds Michael Fuhrer Michal Papaj Shantanu Mukherjee Yande Que Yang-Hao Chan Zhengjue Tong

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