arXiv · cond-mat/0608198
Electrically tunable g-factors in quantum dot molecular spin states
Abstract
We present a magneto-photoluminescence study of individual vertically stacked InAs/GaAs quantum dot pairs separated by thin tunnel barriers. As an applied electric field tunes the relative energies of the two dots, we observe a strong resonant increase or decrease in the g-factors of different spin states that have molecular wavefunctions distributed over both quantum dots. We propose a phenomenological model for the change in g-factor based on resonant changes in the amplitude of the wavefunction in the barrier due to the formation of bonding and antibonding orbitals.
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M. F. Doty, M. Scheibner, I. V. Ponomarev, E. A. Stinaff, A. S. Bracker, V. L. Korenev, T. L. Reinecke, D. Gammon. 2006-10-17. Electrically tunable g-factors in quantum dot molecular spin states. https://doi.org/10.1103/physrevlett.97.197202
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