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[KNIHA][B] The non-equilibrium Green's function method for nanoscale device simulation
M Pourfath - 2014 - Springer
This book bridges the gap between elementary quantum transport books and more rigorous
graduate-level material on the quantum field theory of many-body systems. The book …
graduate-level material on the quantum field theory of many-body systems. The book …
Armchair graphene nanoribbon resonant tunneling diodes using antidote and BN do**
Band gap size of armchair graphene nanoribbons (AGNRs) can be tuned by implementing
topological antidotes or boron/nitride (BN) atoms at the middle of ribbons. By imposing such …
topological antidotes or boron/nitride (BN) atoms at the middle of ribbons. By imposing such …
Band gap tuning of armchair graphene nanoribbons by using antidotes
The electronic properties of armchair graphene nanoribbons (AGNRs) can be changed by
creating antidotes within the pristine ribbons and producing antidote super lattice AGNRs …
creating antidotes within the pristine ribbons and producing antidote super lattice AGNRs …
Creating and steering highly directional electron beams in graphene
We put forward a concept to create highly collimated, nondispersive electron beams in
pseudorelativistic Dirac materials such as graphene or topological insulator surfaces …
pseudorelativistic Dirac materials such as graphene or topological insulator surfaces …
Immunity of electronic and transport properties of phosphorene nanoribbons to edge defects
We present an extensive study of the electronic properties and carrier transport in
phosphorene nanoribbons (PNRs) with edge defects by using rigorous atomistic quantum …
phosphorene nanoribbons (PNRs) with edge defects by using rigorous atomistic quantum …
Device performance of graphene nanoribbon field-effect transistors in the presence of line-edge roughness
The electrical characteristics of armchair edge graphene nanoribbon field-effect transistors
in the presence of line-edge roughness scattering are studied. Self-consistent atomistic …
in the presence of line-edge roughness scattering are studied. Self-consistent atomistic …
Tailoring electrical conductivity of two dimensional nanomaterials using plasma for edge electronics: A mini review
Since graphene has been discovered, two-dimensional nanomaterials have attracted
attention due to their promising tunable electronic properties. The possibility of tailoring …
attention due to their promising tunable electronic properties. The possibility of tailoring …
Influence of edge defects, vacancies, and potential fluctuations on transport properties of extremely scaled graphene nanoribbons
Atomistic quantum transport simulations of a large ensemble of devices are employed to
investigate the impact of different sources of disorder on the transport properties of extremely …
investigate the impact of different sources of disorder on the transport properties of extremely …
A comparative study of substrates disorder on mobility in the Graphene nanoribbon: Charged impurity, surface optical phonon, surface roughness
The effects of substrate on the electronic properties of Graphene remains unclear. Many
theoretical and experimental efforts have been done to clarify this discrepancy. In this work …
theoretical and experimental efforts have been done to clarify this discrepancy. In this work …
The electronic and optical properties of armchair germanene nanoribbons
The electronic and optical properties of armchair germanene nanoribbons (AGeNRs) are
studied using the first principles calculations. The band structure, band-gap size, projected …
studied using the first principles calculations. The band structure, band-gap size, projected …