arXiv · 0905.1254
Pump-Probe Faraday Rotation and Ellipticity in an Ensemble of Singly Charged Quantum Dots
Abstract
A description of spin Faraday rotation, Kerr rotation and ellipticity signals for single- and multi-layer ensembles of singly charged quantum dots (QDs) is developed. The microscopic theory considers both the single pump-pulse excitation and the effect of a train of such pulses, which in the case of long resident-electron spin coherence time leads to a stationary distribution of the electron spin polarization. The calculations performed for single-color and two-color pump-probe setups show that the three experimental techniques: Faraday rotation, Kerr rotation and ellipticity measurements provide complementary information about an inhomogeneous ensemble of QDs. The microscopic theory developed for a three-dimensional ensemble of QDs is shown to agree with the phenomenological description of these effects. The typical time-dependent traces of pump-probe Faraday rotation, Kerr rotation and ellipticity signals are calculated for various experimental conditions.
Explore related subjects
Keep this discovery
I. A. Yugova, M. M. Glazov, E. L. Ivchenko, Al. L. Efros. 2009-06-19. Pump-Probe Faraday Rotation and Ellipticity in an Ensemble of Singly Charged Quantum Dots. https://doi.org/10.1103/physrevb.80.104436
Cite the original work for its findings. Save a collection to share your selection of sources.