arXiv Analytics

Sign in

arXiv:2106.12383 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Universal semiclassical equations based on the quantum metric

C. Leblanc, G. Malpuech, D. D. Solnyshkov

Published 2021-06-23Version 1

We derive semiclassical equations of motion for an accelerated wavepacket in a two-band system. We show that these equations can be formulated in terms of the static band geometry described by the quantum metric. We consider the specific cases of the Rashba Hamiltonian with and without a Zeeman term. The semiclassical trajectories are in full agreement with the ones found by solving the Schr\"odinger equation. This formalism successfully describes the adiabatic limit and the anomalous Hall effect traditionally attributed to Berry curvature. It also describes the opposite limit of coherent band superposition giving rise to a spatially oscillating Zitterbewegung motion. At $k=0$, such wavepacket exhibits a circular trajectory in real space, with its radius given by the square root of the quantum metric. This quantity appears as a universal length scale, providing a geometrical origin of the Compton wavelength.

Related articles: Most relevant | Search more
arXiv:2110.14658 [cond-mat.mes-hall] (Published 2021-10-27, updated 2022-03-01)
Bound on resistivity in flat-band materials due to the quantum metric
arXiv:2410.14428 [cond-mat.mes-hall] (Published 2024-10-18)
Beam dynamics induced by the quantum metric of exceptional rings
arXiv:2410.04995 [cond-mat.mes-hall] (Published 2024-10-07)
Nonlinear transport theory at the order of quantum metric