Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high mobility. These exotic carrier properties enable the design and development of unique graphene devices. However, traditional semiconductor solvers based on drift-diffusion equations are not capable of modeling and simulating the charge distribution and transport in graphene, accurately, to its full extent. The effects of charge inertia, viscosity, collective charge movement, contact doping, etc., cannot be accounted for by the conventional Poisson-drift-diffusion models, due to the underlying assumptions and simplifications. Therefore, this article proposes two mathematical models to analyze and simulate graphene-based devices. The first model...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
Graphene is a newly discovered material. It has many excellent properties, which make the research o...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
In this thesis, we investigate charge transport in graphene. Graphene is one of the most important n...
Based on the recently developed picture of an electronic ideal relativistic fluid at the Dirac point...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
Charge transport in graphene is crucial for the design of a new generation of nanoscale electron dev...
In this research work, roll-to-roll chemical vapor deposited graphene device electronic transport pr...
AbstractA field effect transistor having the active area made of monolayer graphene is simulated by ...
ABSTRACT: Graphene is believed to be an excellent candidate material for next-generation electronic ...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
In the context of graphene-based composite applications, a complete understanding of charge conducti...
As the size of CMOS devices keeps shrinking more and more, power dissipation has become one of the m...
This thesis presents a model that provides the output and transfer characteristics of graphene field...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
Graphene is a newly discovered material. It has many excellent properties, which make the research o...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
In this thesis, we investigate charge transport in graphene. Graphene is one of the most important n...
Based on the recently developed picture of an electronic ideal relativistic fluid at the Dirac point...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
Charge transport in graphene is crucial for the design of a new generation of nanoscale electron dev...
In this research work, roll-to-roll chemical vapor deposited graphene device electronic transport pr...
AbstractA field effect transistor having the active area made of monolayer graphene is simulated by ...
ABSTRACT: Graphene is believed to be an excellent candidate material for next-generation electronic ...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
In the context of graphene-based composite applications, a complete understanding of charge conducti...
As the size of CMOS devices keeps shrinking more and more, power dissipation has become one of the m...
This thesis presents a model that provides the output and transfer characteristics of graphene field...
A semi-classical electrodynamical model is derived to describe the electrical transport along graphe...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
Graphene is a newly discovered material. It has many excellent properties, which make the research o...