Non-Markovian dynamics of double quantum dot charge qubits due to acoustic phonons
Abstract
We investigate the dynamics of a double quantum dot charge qubit which is coupled to piezoelectric acoustic phonons, appropriate for GaAs heterostructures. At low temperatures, the phonon bath induces a non-Markovian dynamical behavior of the oscillations between the two charge states of the double quantum dot. Upon applying the numerically exact quasiadiabatic propagator path-integral scheme, the reduced density matrix of the charge qubit is calculated, thereby avoiding the Born-Markov approximation. This allows a systematic study of the dependence of the Q-factor on the lattice temperature, on the size of the quantum dots, as well as on the interdot coupling. We calculate the Q-factor for a recently realized experimental setup and find that it is two orders of magnitudes larger than the measured value, indicating that the decoherence due to phonons is a subordinate mechanism.
Cite
@article{arxiv.cond-mat/0505621,
title = {Non-Markovian dynamics of double quantum dot charge qubits due to acoustic phonons},
author = {M. Thorwart and J. Eckel and E. R. Mucciolo},
journal= {arXiv preprint arXiv:cond-mat/0505621},
year = {2007}
}
Comments
5 pages, 7 figures, replaced with the version to appear in Phys. Rev. B