Spin relaxation of a single electron in a weakly coupled double quantum dot is calculated numerically. The phonon assisted spin flip is allowed by the presence of the linear and cubic spin-orbit couplings and nuclear spins. The rate is calculated as a function of the interdot coupling, the magnetic field strength and orientation, and the dot bias. In an in-plane magnetic field, the rate is strongly anisotropic with respect to the magnetic field orientation, due to the anisotropy of the spin-orbit interactions. The nuclear spin influence is negligible. In an out-of-plane field, the nuclear spins play a more important role due selection rules imposed on the spin-orbit couplings. Our theory shows a very good agreement with data measured in [Sr...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
Spin relaxation of a single electron in a weakly coupled double quantum dot is calculated numericall...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
A global quantitative picture of the phonon-induced two-electron spin relaxation in GaAs double quan...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
A global quantitative picture of the phonon-induced two-electron spin relaxation in GaAs double quan...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
Spin relaxation of a single electron in a weakly coupled double quantum dot is calculated numericall...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
A global quantitative picture of the phonon-induced two-electron spin relaxation in GaAs double quan...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
A global quantitative picture of the phonon-induced two-electron spin relaxation in GaAs double quan...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
This work gives a comprehensive quantitative analysis of the relaxation of electron spins confined i...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...