Observation of the surface hybridization gap in the electrical transport properties of the ultrathin topological insulator (BiSb)Te
arXiv:2511.14454 · doi:10.1103/d5xc-bvmx
Abstract
We study the three-dimensional topological insulator (BiSb)Te in its ultrathin limit i.e. when the thickness is of the same order as the surface state penetration depth. It is expected that in this limit a hybridization gap opens at the Dirac point, which gives rise to a quantum spin Hall (QSH) or insulating phase, depending on the material thickness. We fabricate (BiSb)Te Hall bars with a thicknesses of 6 and 9 nm and measure an insulating phase around the Dirac point for low bias and at sub-Kelvin temperatures only in samples fabricated from the 6 nm films, which indicates the presence of a hybridization gap. The effect of a perpendicular magnetic field on the hybridization gap is studied but remains partially unresolved. The results form an important step towards experimentally realizing the quantum spin Hall state via hybridization in ultrathin films of (BiSb)Te, yet, they also expose a knowledge gap regarding transport measurements in these systems.
8 + 7 pages, 8 + 4 figures
References in corpus (12)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Observation of the Quantum Spin Hall Effect up to 100 Kelvin in a Monolayer Crystal
- Surface States of the Topological Insulator Bi_{1-x}Sb_x
- Tunable Surface Conductivity in Bi2Se3 Revealed in Diffusive Electron Transport
- Spatially resolved study of backscattering in the quantum spin Hall state
- Charge puddles in the bulk and on the surface of the topological insulator BiSbTeSe studied by scanning tunneling microscopy and optical spectroscopy
- Electrostatic Coupling between Two Surfaces of a Topological Insulator Nanodevice
- Theory of the random potential and conductivity at the surface of a topological insulator
- Interaction between counter-propagating quantum Hall edge channels in the 3D topological insulator BiSbTeSe
- Spectroscopic signature of surface states and bunching of bulk subbands in topological insulator (BiSb)Te thin films