We have investigated the structure of double quantum dots vertically coupled at zero magnetic field within local-spin-density functional theory. The dots are identical and have a finite width, and the whole system is axially symmetric. We first discuss the effect of thickness on the addition spectrum of one single dot. Next we describe the structure of coupled dots as a function of the interdot distance for different electron numbers. Addition spectra, Hund's rule, and molecular-type configurations are discussed. It is shown that self-interaction corrections to the density-functional results do not play a very important role in the calculated addition spectr
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
Quantum dots are man-made nanoscale structures. As they show typical atomic properties they are ofte...
We have investigated the structure of double quantum dots vertically coupled at zero magnetic field ...
Within local-spin-density functional theory, we have investigated the ¿dissociation¿ of few-electron...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We present experimental results for the ground-state electrochemical potentials of a few electron se...
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 study the magnetic field induced singlet/triplet transition for two electrons in vertically-coupl...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.63.045317.We ...
We have computed electronic structures and total energies of circularly confined two-dimensional qua...
We present ground-state calculations for laterally coupled quantum dots containing two, four, and ei...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
Quantum dots are man-made nanoscale structures. As they show typical atomic properties they are ofte...
We have investigated the structure of double quantum dots vertically coupled at zero magnetic field ...
Within local-spin-density functional theory, we have investigated the ¿dissociation¿ of few-electron...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We present experimental results for the ground-state electrochemical potentials of a few electron se...
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 study the magnetic field induced singlet/triplet transition for two electrons in vertically-coupl...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.63.045317.We ...
We have computed electronic structures and total energies of circularly confined two-dimensional qua...
We present ground-state calculations for laterally coupled quantum dots containing two, four, and ei...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
Quantum dots are man-made nanoscale structures. As they show typical atomic properties they are ofte...