Publication | Closed Access
Controlling resonant tunneling in graphene via Fermi velocity engineering
33
Citations
55
References
2016
Year
Fermi Velocity EngineeringGraphene NanomeshesElectrical EngineeringEngineeringPhysicsNanoelectronicsApplied PhysicsCondensed Matter PhysicsFermi VelocityGrapheneGraphene NanoribbonFermi Velocity Modulation
We investigate the resonant tunneling in a single layer graphene superlattice with modulated energy gap and Fermi velocity via an effective Dirac-like Hamiltonian. We calculate the transmission coefficient with the transfer matrix method and analyze the effect of a Fermi velocity modulation on the electronic transmission, in the case of normal and oblique incidence. We find it is possible to manipulate the electronic transmission in graphene by Fermi velocity engineering, and show that it is possible to tune the transmitivity from 0 to 1. We also analyze how a Fermi velocity modulation influences the total conductance and the Fano factor. Our results are relevant for the development of novel graphene-based electronic devices.
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