We report on multiphysics full-wave techniques in the frequency (energy)-domain and time-domain, aimed at the investigation of the combined electromagnetic-coherent transport problem in nano-structured materials and devices, in particular carbon-based materials/devices. The quantum transport is modeled by i) discrete Hamiltonians at atomistic scale, ii) Schrödinger equation, and/or Dirac/Dirac-like eqs. at continuous level. In the frequency-domain, a rigorous Poisson-coherent transport equation system is provided. In the time-domain, Maxwell equations are self-consistently coupled to the Schrödinger/Dirac equation
We report on advanced full-wave techniques, both in the frequency and energy domains, aimed at the ...
The time-dependent quantum transport theory has attracted a great deal of interest in the past decad...
The goal of this workshop is to present research activities on high-performance nanodevices for RF ...
We report on multiphysics full-wave techniques in the frequency (energy)-domain and time-domain, aim...
Full-wave multiphysics techniques aimed at the investigation of the combined electromagnetic-coheren...
Full-wave multiphysics techniques aimed at the investigation of the combined electromagnetic-cohere...
We report on full-wave techniques in the frequency (energy)-domain and the time-domain, aimed at the...
In this paper, we report on multiphysics full-wave techniques in the frequency (energy)-domain and t...
The advancement of nanoelectronics depends on the progress of technology, but it also relies on the ...
We report on multiphysics full-wave techniques in the frequency (energy)-domain and the time-domain,...
In this contribution, we report on the analysis of charge transport in graphene nanoribbons by means...
We report on advanced full-wave techniques, both in the frequency and energy domains, aimed at the ...
The time-dependent quantum transport theory has attracted a great deal of interest in the past decad...
The goal of this workshop is to present research activities on high-performance nanodevices for RF ...
We report on multiphysics full-wave techniques in the frequency (energy)-domain and time-domain, aim...
Full-wave multiphysics techniques aimed at the investigation of the combined electromagnetic-coheren...
Full-wave multiphysics techniques aimed at the investigation of the combined electromagnetic-cohere...
We report on full-wave techniques in the frequency (energy)-domain and the time-domain, aimed at the...
In this paper, we report on multiphysics full-wave techniques in the frequency (energy)-domain and t...
The advancement of nanoelectronics depends on the progress of technology, but it also relies on the ...
We report on multiphysics full-wave techniques in the frequency (energy)-domain and the time-domain,...
In this contribution, we report on the analysis of charge transport in graphene nanoribbons by means...
We report on advanced full-wave techniques, both in the frequency and energy domains, aimed at the ...
The time-dependent quantum transport theory has attracted a great deal of interest in the past decad...
The goal of this workshop is to present research activities on high-performance nanodevices for RF ...