We prove existence of a weak solution for a hybrid model for the electro-thermal behavior of semiconductor heterostructures. This hybrid model combines an electro-thermal model based on drift-diffusion with thermistor type models in different subregions of the semiconductor heterostructure. The proof uses a regularization method and Schauder's fixed point theorem. For boundary data compatible with thermodynamic equilibrium we verify, additionally, uniqueness. Moreover, we derive bounds and higher integrability properties for the electrostatic potential and the quasi Fermi potentials as well as the temperature
Nonisothermal electron transport in thin barrier heterostructures is investigated using Monte Carlo ...
We study a stationary thermistor model describing the electrothermal behavior of organic semiconduct...
Organische Halbleiterbauelemente sind eine vielversprechende Technologie, die das Spektrum der optoe...
We prove existence of a weak solution for a hybrid model for the electro-thermal behavior of semicon...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
We derive a coarse-grained model for the electrothermal interaction of organic semiconductors. The m...
We present an electrothermal drift-diffusion model for organic semiconductor devices with Gauss-Ferm...
We present an electrothermal drift–diffusion model for organic semiconductor devices with Gauss–Ferm...
We introduce an empirical PDE model for the electrothermal description of organic semiconductor devi...
Electro-thermal transport phenomena in semiconductors are described by the non-isothermal drift-diff...
We discretize a unipolar electrothermal drift-diffusion model for organic semiconductor devices with...
We introduce an empirical PDE model for the electrothermal description of organic semiconductor devi...
Many challenges faced in today's semiconductor devices are related to self-heating phenomena. The op...
Many challenges faced in today's semiconductor devices are related to self-heating phenomena. The op...
Nonisothermal electron transport in thin barrier heterostructures is investigated using Monte Carlo ...
We study a stationary thermistor model describing the electrothermal behavior of organic semiconduct...
Organische Halbleiterbauelemente sind eine vielversprechende Technologie, die das Spektrum der optoe...
We prove existence of a weak solution for a hybrid model for the electro-thermal behavior of semicon...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
We derive a coarse-grained model for the electrothermal interaction of organic semiconductors. The m...
We present an electrothermal drift-diffusion model for organic semiconductor devices with Gauss-Ferm...
We present an electrothermal drift–diffusion model for organic semiconductor devices with Gauss–Ferm...
We introduce an empirical PDE model for the electrothermal description of organic semiconductor devi...
Electro-thermal transport phenomena in semiconductors are described by the non-isothermal drift-diff...
We discretize a unipolar electrothermal drift-diffusion model for organic semiconductor devices with...
We introduce an empirical PDE model for the electrothermal description of organic semiconductor devi...
Many challenges faced in today's semiconductor devices are related to self-heating phenomena. The op...
Many challenges faced in today's semiconductor devices are related to self-heating phenomena. The op...
Nonisothermal electron transport in thin barrier heterostructures is investigated using Monte Carlo ...
We study a stationary thermistor model describing the electrothermal behavior of organic semiconduct...
Organische Halbleiterbauelemente sind eine vielversprechende Technologie, die das Spektrum der optoe...