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arxiv: 1607.08084 · v1 · submitted 2016-07-27 · ❄️ cond-mat.quant-gas · hep-ph

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Lindblad Equation for the Inelastic Loss of Ultracold Atoms

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classification ❄️ cond-mat.quant-gas hep-ph
keywords inelasticatomseffectiveequationlindbladlosslocalanti-hermitian
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The loss of ultracold trapped atoms due to deeply inelastic reactions has previously been taken into account in effective field theories for low-energy atoms by adding local anti-Hermitian terms to the effective Hamiltonian. Here we show that when multi-atom systems are considered, an additional modification is required in the equation governing the density matrix. We define an effective density matrix by tracing over the states containing high-momentum atoms produced by deeply inelastic reactions. We show that it satisfies a Lindblad equation, with local Lindblad operators determined by the local anti-Hermitian terms in the effective Hamiltonian. We use the Lindblad equation to derive the universal relation for the two-atom inelastic loss rate for fermions with two spin states and the universal relation for the three-atom inelastic loss rate for identical bosons.

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