Closed-form scattering solution for graphene nanoslide reveals gate-tunable 1D transverse channels and hybrid pseudogauge-electrostatic cavity in bipolar regime.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
cond-mat.mes-hall 2verdicts
CONDITIONAL 2representative citing papers
Derives perturbative expressions for layer-resolved in-plane displacements from continuum elasticity in moiré heterobilayers and predicts a buckling instability near alignment driven by compressive strain.
citing papers explorer
-
Gate-Tunable Resonances and 1D Channel in a Graphene Nanoslide
Closed-form scattering solution for graphene nanoslide reveals gate-tunable 1D transverse channels and hybrid pseudogauge-electrostatic cavity in bipolar regime.
-
Lattice Relaxation in Moir\'e Heterobilayers
Derives perturbative expressions for layer-resolved in-plane displacements from continuum elasticity in moiré heterobilayers and predicts a buckling instability near alignment driven by compressive strain.