arXiv · cond-mat/0504039
Stimulated and spontaneous optical generation of electron spin coherence in charged GaAs quantum dots
Abstract
We report on the coherent optical excitation of electron spin polarization in the ground state of charged GaAs quantum dots via an intermediate charged exciton (trion) state. Coherent optical fields are used for the creation and detection of the Raman spin coherence between the spin ground states of the charged quantum dot. The measured spin decoherence time, which is likely limited by the nature of the spin ensemble, approaches 10 ns at zero field. We also show that the Raman spin coherence in the quantum beats is caused not only by the usual stimulated Raman interaction but also by simultaneous spontaneous radiative decay of either excited trion state to a coherent combination of the two spin states.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
M. V. Gurudev Dutt, Jun Cheng, Bo Li, Xiaodong Xu, Xiaoqin Li, P. R. Berman, D. G. Steel, A. S. Bracker, D. Gammon, Sophia E. Economou, Ren-Bao Liu, L. J. Sham. 2005-06-10. Stimulated and spontaneous optical generation of electron spin coherence in charged GaAs quantum dots. https://doi.org/10.1103/physrevlett.94.227403
Cite the original work for its findings. Save a collection to share your selection of sources.