Coherent control of interacting particles using dynamical and aharonov-bohm phases
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2010
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American Physical Society
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Abstract
A powerful method of manipulating the dynamics of quantum coherent particles is to control the phase of their tunneling. We consider a system of two electrons hopping on a quasi-one- dimensional lattice in the presence of a uniform magnetic field and study the effect of adding a time-periodic driving potential. We show that the dynamical phases produced by the driving can combine with the Aharonov-Bohm phases to give precise control of the localization and dynamics of the particles, even in the presence of strong particle interactions.
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©2010 The American Physical Society.
This research was supported by the Ramón y Cajal program (C. E. C.) and by Spanish MICINN through Grants No. FIS-2007-65723 (C. E. C.) and No. MAT- 2008-02626 (G. P.).