We present a theory and Coulomb and spin blockade spectroscopy experiments on quantum Hall droplets with controlled electron numbers (N1,N2)(N1,N2) in laterally coupled gated quantum dots. The theory is based on the configuration interaction method (CI) coupled with the unrestricted Hartree\u2013Fock (URHF) basis. It allows us to calculate the magnetic field evolution of ground and excited states of coupled quantum dots with large electron numbers. The method is applied to the spin transitions in the (5,5)(5,5) droplet. Preliminary experimental results demonstrate the creation of the (5,5)(5,5) droplet and its spin blockade spectra.NRC publication: Ye
We study the ground states of a planar quantum dot with N = 5, 6, 7 electrons, in the presence of a ...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
Measurements and calculations previously reported for a lateral quantum dot at magnetic fields close...
A lateral quantum dot with approx. 50 electrons is analyzed in high perpendicular magnetic fields. I...
We demonstrate the existence of correlated electronic states as paired spin excitations of lateral q...
We consider a new quantum gate mechanism based on electron spins in coupled semiconductor quantum do...
Two-dimensional semiconductor quantum dots are studied in the filling-factor range 2<v<3. We find bo...
A theory of electronic properties of a spin-singlet quantum Hall droplet at filling factor nu= 2 in ...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We report results of calculations of the effect of spin\u2013orbit interaction on electron spin rela...
We present ground-state calculations for laterally coupled quantum dots containing two, four, and ei...
We study the magnetoconductance of lateral quantum dots in high magnetic fields. We use spin blockad...
In this work, a quantum dot that is defined asymmetrically by electrostatic means induced on a GaAs/...
We present the review of our work on spin effects in single lateral quantum dots with the emphasis o...
Theory of optical properties of interacting electrons and holes in quasi--2D quantum dots in strong ...
We study the ground states of a planar quantum dot with N = 5, 6, 7 electrons, in the presence of a ...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
Measurements and calculations previously reported for a lateral quantum dot at magnetic fields close...
A lateral quantum dot with approx. 50 electrons is analyzed in high perpendicular magnetic fields. I...
We demonstrate the existence of correlated electronic states as paired spin excitations of lateral q...
We consider a new quantum gate mechanism based on electron spins in coupled semiconductor quantum do...
Two-dimensional semiconductor quantum dots are studied in the filling-factor range 2<v<3. We find bo...
A theory of electronic properties of a spin-singlet quantum Hall droplet at filling factor nu= 2 in ...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We report results of calculations of the effect of spin\u2013orbit interaction on electron spin rela...
We present ground-state calculations for laterally coupled quantum dots containing two, four, and ei...
We study the magnetoconductance of lateral quantum dots in high magnetic fields. We use spin blockad...
In this work, a quantum dot that is defined asymmetrically by electrostatic means induced on a GaAs/...
We present the review of our work on spin effects in single lateral quantum dots with the emphasis o...
Theory of optical properties of interacting electrons and holes in quasi--2D quantum dots in strong ...
We study the ground states of a planar quantum dot with N = 5, 6, 7 electrons, in the presence of a ...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
Measurements and calculations previously reported for a lateral quantum dot at magnetic fields close...