Redwan Sajjad
Affiliations: | Electrical Engineering | University of Virginia, Charlottesville, VA |
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Publications
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Zhou X, Kerelsky A, Elahi MM, et al. (2019) Atomic Scale Characterization of Graphene p-n Junctions for Electron-Optical Applications. Acs Nano |
Habib KMM, Sajjad RN, Ghosh AW. (2016) Modified Dirac Hamiltonian for efficient quantum mechanical simulations of micron sized devices Applied Physics Letters. 108 |
Habib KM, Sajjad RN, Ghosh AW. (2015) Chiral tunneling of topological states: towards the efficient generation of spin current using spin-momentum locking. Physical Review Letters. 114: 176801 |
Habib KMM, Sajjad RN, Ghosh AW. (2015) Chiral tunneling of topological states: Towards the efficient generation of spin current using spin-momentum locking Physical Review Letters. 114 |
Sajjad RN, Tseng F, Habib KMM, et al. (2015) Quantum transport at the Dirac point: Mapping out the minimum conductivity from pristine to disordered graphene Physical Review B - Condensed Matter and Materials Physics. 92 |
Sajjad RN, Ghosh AW. (2013) Manipulating chiral transmission by gate geometry: switching in graphene with transmission gaps. Acs Nano. 7: 9808-13 |
Sajjad RN, Polanco CA, Ghosh AW. (2013) Atomistic deconstruction of current flow in graphene based hetero-junctions Journal of Computational Electronics. 12: 232-247 |
Sajjad RN, Sutar S, Lee JU, et al. (2012) Manifestation of chiral tunneling at a tilted graphene p-n junction Physical Review B - Condensed Matter and Materials Physics. 86 |
Sajjad RN, Ghosh AW. (2011) High efficiency switching using graphene based electron “optics” Applied Physics Letters. 99: 123101 |