We obtain a microscopic description of the interaction between electron spins in bulk semiconductors and in pairs of semiconductor quantum dots. Treating the k center dot p band mixing and the Coulomb interaction on the same footing, we obtain in the third order an asymmetric contribution to the exchange interaction arising from the coupling between the spin of one electron and the relative orbital motion of the other. This contribution does not depend on the inversion asymmetry of the crystal and does not conserve the total spin. We find that this contribution is similar to 10(-3) of the isotropic exchange, and is of interest in quantum information. Detailed evaluations of the asymmetric exchange are given for several quantum dot systems
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
The main theme of this thesis is the hyperfine interaction between the many lattice nuclear spins an...
We investigate coupling of localized spins in a semiconductor quantum dot embedded in a microcavity....
The effects of spin-orbit coupling on the two-electron spectra in lateral coupled quantum dots are i...
The influence of the spin-orbit interactions on the energy spectrum of two-electron laterally couple...
We investigate the electron spin–orbit interaction anisotropy of pyramidal InAs quantum dots using a...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
We report on our recent progress in applying semiconductor quantum dots for spin-based quantum compu...
Spin-orbit effects in single electron states in laterally coupled quantum dots in the presence of a...
We consider a new quantum gate mechanism based on electron spins in coupled semiconductor quantum do...
We review and summarize recent theoretical and experimental work on electron spin dynamics in quantu...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
We investigate the influence of the spin-orbit interactions (SOIs) on the electron distribution and ...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
URL: http://www-spht.cea.fr/articles/s01/146 (sur invitation). DresdenWe review recent theoretical d...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
The main theme of this thesis is the hyperfine interaction between the many lattice nuclear spins an...
We investigate coupling of localized spins in a semiconductor quantum dot embedded in a microcavity....
The effects of spin-orbit coupling on the two-electron spectra in lateral coupled quantum dots are i...
The influence of the spin-orbit interactions on the energy spectrum of two-electron laterally couple...
We investigate the electron spin–orbit interaction anisotropy of pyramidal InAs quantum dots using a...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
We report on our recent progress in applying semiconductor quantum dots for spin-based quantum compu...
Spin-orbit effects in single electron states in laterally coupled quantum dots in the presence of a...
We consider a new quantum gate mechanism based on electron spins in coupled semiconductor quantum do...
We review and summarize recent theoretical and experimental work on electron spin dynamics in quantu...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
We investigate the influence of the spin-orbit interactions (SOIs) on the electron distribution and ...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
URL: http://www-spht.cea.fr/articles/s01/146 (sur invitation). DresdenWe review recent theoretical d...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
The main theme of this thesis is the hyperfine interaction between the many lattice nuclear spins an...
We investigate coupling of localized spins in a semiconductor quantum dot embedded in a microcavity....