Dynamics of spin-flip photon-assisted tunneling
Mesoscale and Nanoscale Physics
2016-04-18 v1
Abstract
We present time-resolved measurements of spin-flip photon-assisted tunneling and spin-flip relaxation in a doubly occupied double quantum dot. The photon-assisted excitation rate as a function of magnetic field indicates that spin-orbit coupling is the dominant mechanism behind the spin-flip under the present conditions. We are able to extract the resulting effective `spin-flip tunneling' energy, which is found to be three orders of magnitude smaller than the regular spin-conserving tunneling energy. We also measure the relaxation and dephasing times of a qubit formed out of two two-electron states with different spin and charge configurations.
Keywords
Cite
@article{arxiv.1401.0881,
title = {Dynamics of spin-flip photon-assisted tunneling},
author = {F. R. Braakman and J. Danon and L. R. Schreiber and W. Wegscheider and L. M. K. Vandersypen},
journal= {arXiv preprint arXiv:1401.0881},
year = {2016}
}