Litcius/Paper detail

Uniaxial strain-induced phase transition in the 2D topological semimetal IrTe2

Christopher W. Nicholson, Maxime Rumo, Aki Pulkkinen, Geoffroy Kremer, Björn Salzmann, Marie-Laure Mottas, Baptiste Hildebrand, Thomas Jaouen, Timur K. Kim, Saumya Mukherjee, KeYuan Ma, Matthias Muntwiler, Fabian O. von Rohr, Cephise Cacho, Claude Monney

2021Communications Materials51 citationsDOIOpen Access PDF

Abstract

Abstract Strain is ubiquitous in solid-state materials, but despite its fundamental importance and technological relevance, leveraging externally applied strain to gain control over material properties is still in its infancy. In particular, strain control over the diverse phase transitions and topological states in two-dimensional transition metal dichalcogenides remains an open challenge. Here, we exploit uniaxial strain to stabilize the long-debated structural ground state of the 2D topological semimetal IrTe 2 , which is hidden in unstrained samples. Combined angle-resolved photoemission spectroscopy and scanning tunneling microscopy data reveal the strain-stabilized phase has a 6 × 1 periodicity and undergoes a Lifshitz transition, granting unprecedented spectroscopic access to previously inaccessible type-II topological Dirac states that dominate the modified inter-layer hopping. Supported by density functional theory calculations, we show that strain induces an Ir to Te charge transfer resulting in strongly weakened inter-layer Te bonds and a reshaped energetic landscape favoring the 6×1 phase. Our results highlight the potential to exploit strain-engineered properties in layered materials, particularly in the context of tuning inter-layer behavior.

Topics & Concepts

SemimetalCondensed matter physicsScanning tunneling microscopeContext (archaeology)Topological orderTopology (electrical circuits)Phase transitionPhase (matter)Dirac (video compression format)Photoemission spectroscopyMaterials scienceDensity functional theoryScanning tunneling spectroscopyPhysicsGround stateCharge (physics)Transition metalStrain (injury)SpectroscopyStrain engineeringElectronic structureTopological quantum numberQuantum tunnellingNanotechnologyTopological defectQuantum phase transitionTopological Materials and Phenomena2D Materials and ApplicationsGraphene research and applications