Hydrodynamical models for charge transport in graphene can be obtained as moment equations of the semiclassical Boltzmann equation in which the needed closure relations are obtained by resorting to the Maximum Entropy Principle (Jaynes 1957; Müller and Ruggeri 1998; Mascali and Romano 2005; Jou and Lebon 2010). Several choices of the weight functions defining the moments can be made. The aim of this paper is analyzing the case in which the moments are expectation values of powers of the energy and a comparison is performed with the results given by directly solving the transport equation through the method in Romano et al. (2015) and Coco et al. (2016). It has been found out that adding new moments, representing further expectation ...
Charge transport in graphene is crucial for the design of a new generation of nanoscale electron dev...
In this thesis, we investigate charge transport in graphene. Graphene is one of the most important n...
We study the effect of the Maximum Entropy Principle (MEP) on the thermodynamic behaviour of gases. ...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
The aim of this work is to compare, in monolayer graphene, solutions of the electron Boltzmann equat...
The question of possibility to build additional entropy conservation law for the system of moment eq...
In the last two decades, the Maximum Entropy Principle (MEP) has been successfully employed to const...
In this work the complete (non parabolic bands) Maximum Entropy (MEP) Closures energy transport mode...
By extending the maximum entropy principle within a scheme in total average energy we obtain a close...
The aim of this article is to show that moment approximations of kinetic equations based on a Maximu...
In plasma physics domain, the electrons transport can be des cribed from kinetic and hydrodynamical ...
We derive, using the Entropy Maximum Principle, an expression for the distribution function of carri...
none3siThe aim of this paper is to show that the procedure of maximum entropy principle for the clos...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
The method of moments provides a flexible mathematical framework to derive reduced-order models for ...
Charge transport in graphene is crucial for the design of a new generation of nanoscale electron dev...
In this thesis, we investigate charge transport in graphene. Graphene is one of the most important n...
We study the effect of the Maximum Entropy Principle (MEP) on the thermodynamic behaviour of gases. ...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
The aim of this work is to compare, in monolayer graphene, solutions of the electron Boltzmann equat...
The question of possibility to build additional entropy conservation law for the system of moment eq...
In the last two decades, the Maximum Entropy Principle (MEP) has been successfully employed to const...
In this work the complete (non parabolic bands) Maximum Entropy (MEP) Closures energy transport mode...
By extending the maximum entropy principle within a scheme in total average energy we obtain a close...
The aim of this article is to show that moment approximations of kinetic equations based on a Maximu...
In plasma physics domain, the electrons transport can be des cribed from kinetic and hydrodynamical ...
We derive, using the Entropy Maximum Principle, an expression for the distribution function of carri...
none3siThe aim of this paper is to show that the procedure of maximum entropy principle for the clos...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
The method of moments provides a flexible mathematical framework to derive reduced-order models for ...
Charge transport in graphene is crucial for the design of a new generation of nanoscale electron dev...
In this thesis, we investigate charge transport in graphene. Graphene is one of the most important n...
We study the effect of the Maximum Entropy Principle (MEP) on the thermodynamic behaviour of gases. ...