Within local-spin-density functional theory, we have investigated the ¿dissociation¿ of few-electron circular vertical semiconductor double quantum ring artificial molecules at zero magnetic field as a function of interring distance. In a first step, the molecules are constituted by two identical quantum rings. When the rings are quantum mechanically strongly coupled, the electronic states are substantially delocalized, and the addition energy spectra of the artificial molecule resemble those of a single quantum ring in the few-electron limit. When the rings are quantum mechanically weakly coupled, the electronic states in the molecule are substantially localized in one ring or the other, although the rings can be electrostatically coupled....
We have studied the structure and dipole charge-density response of nanorings as a function of the m...
We investigate the dissociation of few-electron circular vertical semiconductor double quantum dot a...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
Within local-spin-density functional theory, we have investigated the ¿dissociation¿ of few-electron...
Vertically coupled double quantum rings submitted to a perpendicular magnetic field B are addressed ...
Vertically coupled double quantum rings submitted to a perpendicular magnetic field B are addressed ...
We have investigated the structure of double quantum dots vertically coupled at zero magnetic field ...
The ground state structure of few-electron concentric double quantum rings is investigated within th...
We have investigated the dipole charge- and spin-density response of few-electron two-dimensional co...
The molecular states of conduction electrons in laterally coupled quantum rings are investigated th...
The ground states of a few electrons confined in two vertically coupled quantum rings in the presenc...
We present experimental results for the ground-state electrochemical potentials of a few electron se...
We study the effect of tunneling on the electronic structure of two vertically coupled quantum rings...
We study the effect of tunneling on the electronic structure of two vertically coupled quantum rings...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We have studied the structure and dipole charge-density response of nanorings as a function of the m...
We investigate the dissociation of few-electron circular vertical semiconductor double quantum dot a...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
Within local-spin-density functional theory, we have investigated the ¿dissociation¿ of few-electron...
Vertically coupled double quantum rings submitted to a perpendicular magnetic field B are addressed ...
Vertically coupled double quantum rings submitted to a perpendicular magnetic field B are addressed ...
We have investigated the structure of double quantum dots vertically coupled at zero magnetic field ...
The ground state structure of few-electron concentric double quantum rings is investigated within th...
We have investigated the dipole charge- and spin-density response of few-electron two-dimensional co...
The molecular states of conduction electrons in laterally coupled quantum rings are investigated th...
The ground states of a few electrons confined in two vertically coupled quantum rings in the presenc...
We present experimental results for the ground-state electrochemical potentials of a few electron se...
We study the effect of tunneling on the electronic structure of two vertically coupled quantum rings...
We study the effect of tunneling on the electronic structure of two vertically coupled quantum rings...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We have studied the structure and dipole charge-density response of nanorings as a function of the m...
We investigate the dissociation of few-electron circular vertical semiconductor double quantum dot a...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...