Coherent backscattering in fock space: A signature of quantum many-body interference in interacting bosonic systems

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Abstract

We predict a generic signature of quantum interference in many-body bosonic systems resulting in a coherent enhancement of the average return probability in Fock space. This enhancement is robust with respect to variations of external parameters even though it represents a dynamical manifestation of the delicate superposition principle in Fock space. It is a genuine quantum many-body effect that lies beyond the reach of any mean-field approach. Using a semiclassical approach based on interfering paths in Fock space, we calculate the magnitude of the backscattering peak and its dependence on gauge fields that break time-reversal invariance. We confirm our predictions by comparing them to exact quantum evolution probabilities in Bose-Hubbard models, and discuss their relevance in the context of many-body thermalization. © 2014 American Physical Society.

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Engl, T., Dujardin, J., Argüelles, A., Schlagheck, P., Richter, K., & Urbina, J. D. (2014). Coherent backscattering in fock space: A signature of quantum many-body interference in interacting bosonic systems. Physical Review Letters, 112(14). https://doi.org/10.1103/PhysRevLett.112.140403

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