The objective of this work is to shed light on electron transport through sub-micron semiconductor structures, where electronic state quantization, electron-electron interactions and electron-phonon interactions are important. We concentrate here on the most developed vertical quantum device, the double barrier resonant tunneling diode. In this work we analyze particle interactions in two structural limits: 1) large, and 2) small cross-sections, in which the treatments are fundamentally different. Large cross-section structures involve particle-interactions with many electrons and these effects can be described in the Keldysh formalism in a single-particle picture by effective potentials. We present model calculations treating the phonon-pe...
Contains description of one research project.Joint Services Electronics Program Contract DAAL03-89-C...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
Quantized semiconductor structures are presently under investigation for their physical properties a...
The objective of this work is to shed light on electron transport through submicron semiconductor st...
This thesis is considering various aspects of electronic transport through quantum dots, with the fo...
We discuss the main theoretical approaches for the phonon-assisted tunneling in double barrier reson...
The subject of this thesis is the effect of electron-phonon interaction in two classes of mesoscopic...
This doctoral dissertation is concerned with modeling electron transport through nanoscopic structur...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
We investigate the linear ac conductance for tunneling through an arbitrary interacting quantum dot ...
We discuss the quantum transport of electrons through a resonant tunnel junction coupled to a nanome...
We introduce model calculation for the electron transport through a system consists of two serially...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
At the level of fundamental science, it was recently demonstrated that molecular wires can mediate l...
Contains description of one research project.Joint Services Electronics Program Contract DAAL03-89-C...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
Quantized semiconductor structures are presently under investigation for their physical properties a...
The objective of this work is to shed light on electron transport through submicron semiconductor st...
This thesis is considering various aspects of electronic transport through quantum dots, with the fo...
We discuss the main theoretical approaches for the phonon-assisted tunneling in double barrier reson...
The subject of this thesis is the effect of electron-phonon interaction in two classes of mesoscopic...
This doctoral dissertation is concerned with modeling electron transport through nanoscopic structur...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
We investigate the linear ac conductance for tunneling through an arbitrary interacting quantum dot ...
We discuss the quantum transport of electrons through a resonant tunnel junction coupled to a nanome...
We introduce model calculation for the electron transport through a system consists of two serially...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
At the level of fundamental science, it was recently demonstrated that molecular wires can mediate l...
Contains description of one research project.Joint Services Electronics Program Contract DAAL03-89-C...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
Quantized semiconductor structures are presently under investigation for their physical properties a...