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arxiv: 1506.09101 · v1 · pith:7ACTM4OQnew · submitted 2015-06-27 · ❄️ cond-mat.quant-gas · nlin.CD· physics.data-an

Steering random walks with kicked ultracold atoms

classification ❄️ cond-mat.quant-gas nlin.CDphysics.data-an
keywords distributionmomentumrandomkickedkickingwalkatomspower-law
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A kicking sequence of the atom optics kicked rotor at quantum resonance can be interpreted as a quantum random walk in momentum space. We show how to steer such a random walk by applying a random sequence of intensities and phases of the kicking lattice chosen according to a probability distribution. This distribution converts on average into the final momentum distribution of the kicked atoms. In particular, it is shown that a power-law distribution for the kicking strengths results in a L\'evy walk in momentum space and in a power-law with the same exponent in the averaged momentum distribution. Furthermore, we investigate the stability of our predictions in the context of a realistic experiment with Bose-Einstein condensates.

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