Observation of Weyl and Dirac fermions at smooth topological Volkov-Pankratov heterojunctions
arXiv:2207.09292 · doi:10.1103/PhysRevB.107.075129
Abstract
Weyl and Dirac relativistic fermions are ubiquitous in topological matter. Their relativistic character enables high energy physics phenomena like the chiral anomaly to occur in solid state, which allows to experimentally probe and explore fundamental relativistic theories. Here we show that on smooth interfaces between a trivial and a topological material, massless Weyl and massive Dirac fermions intrinsically coexist. The emergence of the latter, known as Volkov-Pankratov states, is directly revealed by magneto-optical spectroscopy, evidencing that their energy spectrum is perfectly controlled by the smoothness of topological interface. Simultaneously, we reveal the optical absorption of the zero-energy chiral Weyl state, whose wavefunction is drastically transformed when the topological interface is smooth. Artificial engineering of the topology profile thus provides a novel textbook system to explore the rich relativistic energy spectra in condensed matter heterostructures.
21 pages 10 figures
References in corpus (17)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Topological Crystalline Insulators
- The space group classification of topological band insulators
- Coexistence of the topological state and a two-dimensional electron gas on the surface of Bi2Se3
- Emergent quantum confinement at topological insulator surfaces
- Topological-Metal to Band-Insulator Transition in (Bi1-xInx)2Se3 Thin Films
- Robust spin-polarized midgap states at step edges of topological crystalline insulators
- Superconducting properties of the In substituted Topological Crystalline Insulator, SnTe
- Quantum Spin Hall Effect in IV-VI Topological Crystalline Insulators
- Electrically Tunable Quantum Spin Hall State in Topological Crystalline Insulator Thin films
- Observation of coexisting weak localization and superconducting fluctuations in strained Sn1-xInxTe thin films
- Massive and topological surface states in tensile strained HgTe
- Living on the edge: Topology, electrostatics and disorder
- Landau level spectroscopy of PbSnSe topological crystalline insulator
- Structure of surface electronic states in strained mercury telluride
- Miniband engineering and topological phase transitions in topological - normal insulator superlattices
Cited by in corpus (5)
- Dispersive Drumhead States in Nodal-Line Semimetal Junctions
- Co-existing topological and Volkov-Pankratov plasmonic edge states in magnetized graphene
- Topological interface states -- a possible path towards a Landau-level laser in the THz regime
- Spectral analysis of the magneto-optical response in valley polarized PbSnSe
- Volkov-Pankratov states in a driven semimetal for a generic interface