English

Quantum Hall effect and current distribution in the 3D topological insulator HgTe

Mesoscale and Nanoscale Physics 2024-10-25 v1

Abstract

We study the quantum Hall effect (QHE) in the three-dimensional topological insulator HgTe, which features topological Dirac-type surface states in a bulk gap opened by strain. Despite the co-existence of multiple carrier subsystems, the system exhibits perfectly quantized Hall plateaus at high magnetic fields. Here we study the system using three different experimental techniques: Transport experiments, capacitance measurements including the quantum capacitance, and current distribution measurements using electrostatically sensitive scanning probe microscopy. Our key finding is that at sufficiently high magnetic fields, the different electronic subsystems merge into one, and the current in a quantum Hall plateau is distributed across the entire width of the Hall bar device.

Keywords

Cite

@article{arxiv.2410.18759,
  title  = {Quantum Hall effect and current distribution in the 3D topological insulator HgTe},
  author = {S. Hartl and L. Freund and M. Kühn and J. Ziegler and E. Richter and W. Himmler and J. Bärenfänger and D. A. Kozlov and N. N. Mikhailov and J. Weis and D. Weiss},
  journal= {arXiv preprint arXiv:2410.18759},
  year   = {2024}
}

Comments

9 pages, 9 figures. Submitted to PRR