arXiv · 2609.08447
Impurity as a probe of Berry curvature and wavefunction winding in gapped two-band models
Abstract
We explore the possibility of using quasiparticle interference near impurities to extract non-local properties of bands. Focusing on the minimal two-band description of a system with multiple valleys, we show that the local density of states (LDOS) induced by non-magnetic impurities can effectively probe both the Berry curvature and the wavefunction winding, locally in each valley. We analyze gapped models based on Dirac, semi-Dirac, quadratic touching, and higher-order touching energy dispersions, in presence of a point-like potential scatterer. We find that for strong enough impurity potentials the LDOS along a contour around the impurity unambiguously shows the wavefunction winding number, in contrast to the case of gapless Dirac-like dispersions where the winding can be precluded by LDOS oscillations in the radial direction. We also establish a general connection between, on the one hand, the Berry curvature as a function of momentum locally in a valley, and on the other hand, the wavefunction winding number and the energy dispersion parameters, making hence the local Berry curvature directly observable from spectroscopic LDOS information.
Explore related subjects
Keep this discovery
Reda Nabil, Pascal Simon, Andrej Mesaros. 2026-09-08. Impurity as a probe of Berry curvature and wavefunction winding in gapped two-band models. https://arxiv.org/abs/2609.08447
Cite the original work for its findings. Save a collection to share your selection of sources.