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Quasi-one-dimensional topological band structure and van Hove singularities in monolayer TaIrTe4_4 from laser μμ-ARPES

Published 21 Aug 2026 in cond-mat.mtrl-sci and cond-mat.str-el | (2608.20978v1)

Abstract: Recent transport experiments reported a quantum spin Hall insulator phase in monolayer 1T-TaIrTe4_4 gated away from charge neutrality. This phase is not predicted by band structure calculations and has been attributed to an electronic instability induced by strong correlations at a putative van Hove singularity. Here, we investigate the electronic structure of exfoliated monolayer 1T-TaIrTe4_4 using micro-focus laser angle resolved photoemission. We find a strongly anisotropic band structure susceptible to density wave instabilities. Our data further reveal a saddle point singularity in the density of states. However, we find that the saddle point lies at a density for which transport experiments found no anomalies. Moreover, the quasiparticle line widths suggest weak electron correlations only. This points to a secondary role of van Hove singularities and electron correlations in the transport phase diagram of monolayer 1T-TaIrTe4_4.

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