Title of article
Ratchet-induced matter–wave transport and soliton collisions in Bose–Einstein condensates
Author/Authors
Poletti، نويسنده , , Dario and Ostrovskaya، نويسنده , , Elena A. and Alexander، نويسنده , , Tristram J. and Li، نويسنده , , Baowen and Kivshar، نويسنده , , Yuri S.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
7
From page
1338
To page
1344
Abstract
We study the dynamics of bright matter–wave solitons in a Bose–Einstein condensate with negative scattering length under the influence of a time-periodic ratchet potential. The potential is formed by a one-dimensional bichromatic optical lattice which flashes on and off so that the time average of its amplitude vanishes. Due to the broken space and time-reversal symmetries of the potential, the soliton is transported with a nonzero average velocity. By employing the non-dissipative mean-field model for the matter waves, we study the dependence of the transport velocity on the initial state of the soliton and show how the properties of the individual localized states affect the outcome of their collisions. A useful insight into the transport properties is provided by Hamiltonian theory for the mean field, which treats the extended matter–wave excitation as an effective classical particle.
Keywords
Bose–Einstein condensate , Matter–wave soliton , Optical ratchet potential
Journal title
Physica D Nonlinear Phenomena
Serial Year
2009
Journal title
Physica D Nonlinear Phenomena
Record number
1729076
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