Dirac imprints on the $g$-factor anisotropy in graphene
Abstract
Dirac electrons in graphene are to lowest order spin 1/2 particles, owing to the orbital symmetries at the Fermi level. However, anisotropic corrections in the -factor appear due to the intricate spin-valley-orbit coupling of chiral electrons. We resolve experimentally the -factor along the three orthogonal directions in a large-scale graphene sample. We employ a Hall bar structure with an external magnetic field of arbitrary direction, and extract the effective -tensor via resistively-detected electron spin resonance. We employ a theoretical perturbative approach to identify the intrinsic and extrinsic spin orbit coupling and obtain a fundamental parameter inherent to the atomic structure of C, commonly used in ab-initio models.
Cite
@article{arxiv.2012.06324,
title = {Dirac imprints on the $g$-factor anisotropy in graphene},
author = {Marta Prada and Lars Tiemann and Jonas Sichau and Robert H Blick},
journal= {arXiv preprint arXiv:2012.06324},
year = {2021}
}
Comments
5 pages, 4 figures