Transmission in Graphene through Time-oscillating Linear Barrier
arXiv:1812.05500
Abstract
Transmission probabilities of Dirac fermions in graphene under linear barrier potential oscillating in time are investigated. Solving Dirac equation we end up with the solutions of the energy spectrum depending on several modes coming from the oscillations. These will be used to obtain a transfer matrix that allows to determine transmission amplitudes of all modes. Due to numerical difficulties in truncating the resulting coupled channel equations, we limit ourselves to low quantum channels, i.e. , and study the three corresponding transmission probabilities.
14 pages, 6 figures, clarifications added, misprints corrected. Version to appear in EPJB (2019)