<p>Negative differential conductivity (NDC) is a nonlinear property of electronic transport for high electric field strength found in materials and devices such as semiconductor superlattices, bulk GaAs and Gunn diodes. In spatially extended systems, NDC can cause rich dynamics such as static and mobile field domains and moving charge fronts. In this thesis, these phenomena are studied theoretically and numerically for semiconductor superlattices. Two classes of models are considered: a discrete model based on sequential resonant tunneling between neighboring quantum wells is used to described charge transport in weakly-coupled superlattices, and a continuum model based on the miniband transport is used to describe charge transport strongly...
The thesis is concerned principally with Gunn-effect oscillations, low-frequency oscillations due to...
We theoretically investigate vertical high-field transport in semiconductor superlattices, which exh...
We investigate the transition from static to dynamic electric field domains (EFDs) in a doped GaAs/A...
We analyze theoretically the dynamical transport through a weakly coupled semiconductor superlattice...
AbstractA numerical study of electric field domain relocation during slow voltage switching is prese...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
We have studied the problem of the current flow through the sample with narrow energy band when the ...
We present a complete description of the stationary and dynamical behavior of semiconductor superla...
A numerical study of electric field domain relocation during slow voltage switching is presented for...
High field electronic transport through a strongly coupled superlattice (SL) with a shunting side la...
Abstract. The continuum limit of a recently proposed model for charge transport in resonant-tunnelin...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We study the motion of electrons in a single miniband of a semiconductor superlattice driven by THz ...
We study the motion of electrons in a single miniband of a semiconductor superlattice drive...
The thesis is concerned principally with Gunn-effect oscillations, low-frequency oscillations due to...
We theoretically investigate vertical high-field transport in semiconductor superlattices, which exh...
We investigate the transition from static to dynamic electric field domains (EFDs) in a doped GaAs/A...
We analyze theoretically the dynamical transport through a weakly coupled semiconductor superlattice...
AbstractA numerical study of electric field domain relocation during slow voltage switching is prese...
We study the effects of dissipation on electron transport in a semiconductor superlattice with an ap...
We have studied the problem of the current flow through the sample with narrow energy band when the ...
We present a complete description of the stationary and dynamical behavior of semiconductor superla...
A numerical study of electric field domain relocation during slow voltage switching is presented for...
High field electronic transport through a strongly coupled superlattice (SL) with a shunting side la...
Abstract. The continuum limit of a recently proposed model for charge transport in resonant-tunnelin...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We develop a semiclassical balance equation model for transport through a single miniband of a semi...
We study the motion of electrons in a single miniband of a semiconductor superlattice driven by THz ...
We study the motion of electrons in a single miniband of a semiconductor superlattice drive...
The thesis is concerned principally with Gunn-effect oscillations, low-frequency oscillations due to...
We theoretically investigate vertical high-field transport in semiconductor superlattices, which exh...
We investigate the transition from static to dynamic electric field domains (EFDs) in a doped GaAs/A...