Recent measurements of electron escape from a nonequilibrium charged quantum dot are interpreted within a two-dimensional (2D) separable model. The confining potential is derived from 3D self-consistent Poisson-Thomas-Fermi calculations. It is found that the sequence of decay lifetimes provides a sensitive test of the confining potential and its dependence on electron occupatio
The problem of two electrons in a three-dimensional quantum dot with Gaussian confinement is investi...
We investigate universal properties of strongly confined particles that turn out to be dramatically ...
We present comparative measurements of the charge occupation and conductance of a GaAs/AlGaAs quantu...
Based upon the tunneling Hamiltonian, the lifetime of electrons in the quasibound state of quantum d...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We have performed Hartree-Fock calculations of the electronic structure of N ≤ 10 electrons in a qua...
In a pair of self assembled or gated laterally arranged quantum dots, an electronically excited stat...
We explore a possibility of measuring deviation from the exponential decay law in pure quantum syste...
We present a theoretical model for the dynamics of an electron that gets trapped by means of decoher...
We describe the conditional and unconditional dynamics of two coupled quantum dots when one dot is s...
The present thesis investigates serial quantum dot arrays of different sizes, the double quantum dot...
We use a configuration-interaction approach and the Fermi golden rule to investigate electron-phonon...
We simulate the dynamics of a single-electron source, modeled as a quantum dot with on-site Coulomb ...
Employing the Anderson impurity model, we study tunneling properties through an ideal quantum dot ne...
We present a theoretical model for the dynamics of an electron that gets trapped by means of decoher...
The problem of two electrons in a three-dimensional quantum dot with Gaussian confinement is investi...
We investigate universal properties of strongly confined particles that turn out to be dramatically ...
We present comparative measurements of the charge occupation and conductance of a GaAs/AlGaAs quantu...
Based upon the tunneling Hamiltonian, the lifetime of electrons in the quasibound state of quantum d...
We propose a confinement potential for electrons in a two-dimensional (2D) quantum dot that is more ...
We have performed Hartree-Fock calculations of the electronic structure of N ≤ 10 electrons in a qua...
In a pair of self assembled or gated laterally arranged quantum dots, an electronically excited stat...
We explore a possibility of measuring deviation from the exponential decay law in pure quantum syste...
We present a theoretical model for the dynamics of an electron that gets trapped by means of decoher...
We describe the conditional and unconditional dynamics of two coupled quantum dots when one dot is s...
The present thesis investigates serial quantum dot arrays of different sizes, the double quantum dot...
We use a configuration-interaction approach and the Fermi golden rule to investigate electron-phonon...
We simulate the dynamics of a single-electron source, modeled as a quantum dot with on-site Coulomb ...
Employing the Anderson impurity model, we study tunneling properties through an ideal quantum dot ne...
We present a theoretical model for the dynamics of an electron that gets trapped by means of decoher...
The problem of two electrons in a three-dimensional quantum dot with Gaussian confinement is investi...
We investigate universal properties of strongly confined particles that turn out to be dramatically ...
We present comparative measurements of the charge occupation and conductance of a GaAs/AlGaAs quantu...