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arxiv: 1803.05410 · v3 · pith:BFWY4FEKnew · submitted 2018-03-14 · 🧮 math-ph · math.MP

Effective non-linear spinor dynamics in a spin-1 Bose-Einstein condensate

classification 🧮 math-ph math.MP
keywords dynamicseffectivespinorbose-einsteincondensateinteractionparticlessystem
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We derive from first principles the experimentally observed effective dynamics of a spinor Bose gas initially prepared as a Bose-Einstein condensate and then left free to expand ballistically. In spinor condensates, which represent one of the recent frontiers in the manipulation of ultra-cold atoms, particles interact with a two-body spatial interaction and a spin-spin interaction. The effective dynamics is governed by a system of coupled semi-linear Schr\"odinger equations: we recover this system, in the sense of marginals in the limit of infinitely many particles, with a mean-field re-scaling of the many-body Hamiltonian. When the resulting control of the dynamical persistence of condensation is quantified with the parameters of modern observations, we obtain a bound that remains quite accurate for the whole typical duration of the experiment.

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