2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/170575Electronic waveguides in graphene formed by counterpropagating snake states in suitable inhomogeneous magnetic fields are shown to constitute a realization of a Tomonaga-Luttinger liquid. Due to the spatial separation of the right- and left-moving snake states, this non-Fermi liquid state induced by electron-electron interactions is essentially unaffected by disorder. We calculate the interaction parameters accounting for the absence of Galilei invariance in this system, and thereby demonstrate that non-Fermi liquid effects are significant and tunable in realistic geometries.10 pages, 5 figures, published versionMesoscale and Nanoscale PhysicsStrongly Correlated ElectronsTomonaga-Luttinger liquid parameters of magnetic waveguides in graphenetext