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Quantum dynamics in a time-dependent cylindrical trap
Authors:S.V. Mousavi
Affiliation:Department of Physics, The University of Qom, P.O. Box 37165, Qom, Iran
Abstract:
Solutions to the Schrödinger equation are examined for a particle inside a cylindrical trap of a circular time-dependent cross-section. Analytical expressions for energy and momentum expectation values are derived with respect to the exact solutions; and the adiabatic and sudden change of the boundary are discussed. The density profile as a function of time in a given observation point, resembles the diffraction-in-time pattern observed in a suddenly released particle but with an enhanced fringe visibility. Numerical computations are presented for both contracting and expanding boxes.
Keywords:Schrödinger equation  Moving boundary condition  Diffraction in time
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