Generating mesoscopic bell states via collisions of distinguishable quantum bright solitons

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Abstract

We investigate numerically the collisions of two distinguishable quantum matter-wave bright solitons in a one-dimensional harmonic trap. We show that such collisions can be used to generate mesoscopic Bell states that can reliably be distinguished from statistical mixtures. Calculation of the relevant s-wave scattering lengths predicts that such states could potentially be realized in quantum-degenerate mixtures of Rb85 and Cs133. In addition to fully quantum simulations for two distinguishable two-particle solitons, we use a mean-field description supplemented by a stochastic treatment of quantum fluctuations in the soliton's center of mass: we demonstrate the validity of this approach by comparison to a mathematically rigorous effective potential treatment of the quantum many-particle problem. © 2013 American Physical Society.

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Gertjerenken, B., Billam, T. P., Blackley, C. L., Le Sueur, C. R., Khaykovich, L., Cornish, S. L., & Weiss, C. (2013). Generating mesoscopic bell states via collisions of distinguishable quantum bright solitons. Physical Review Letters, 111(10). https://doi.org/10.1103/PhysRevLett.111.100406

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