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Coherent Control of Tunneling in Double-Well Potentials (1102.0083v1)

Published 1 Feb 2011 in quant-ph, cond-mat.quant-gas, hep-th, and physics.chem-ph

Abstract: For an asymmetric double-well potential system, it is shown that, if the potential is quadratic until it reaches several times of the zero-point energies from the bottoms in each well, the energy eigenvalues of the low lying excited states of the double-well system must be close to the eigenvalues of the quadratic potentials. These eigenvalue structures suggest a method for the coherent control of the tunneling as well as realizing almost complete localization of the wave packet in one of the wells, by handling the double-well asymmetry. Numerical examples are included to indicate that the method could be useful also in a more general potential, and to propose experimental confirmations.

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