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Tunneling vortex dynamics in linearly coupled Bose-Hybbard rings

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The quantum dynamics of population-balanced fractional vortices and population-imbalanced vortices in an effective two-state bosonic system, made of two coupled discrete circuits with few sites, is addressed within the Bose-Hubbard model. We show that, for low on-site interaction, the tunneling of quantized vortices between the rings performs a coherent, oscillating dynamics connecting current states with chiral symmetry. The vortex-flux transfer dually follows the usual sinusoidal particle current of the Josephson effect, in good agreement with a mean-field approximation. Within such a regime, the switch of persistent currents in the rings resembles flux-qubit features and is feasible for experimental realization. On the contrary, strong interatomic interactions suppress the chiral current and lead the system into fragmented condensation.

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ESCRIVÀ, Albert, MUÑOZ MATEO, Antonio, GUILLEUMAS, Montserrat, JULIÁ-DÍAZ, Bruno. Tunneling vortex dynamics in linearly coupled Bose-Hybbard rings. _Physical Review A_. 2019. Vol. 100, núm. 063621. [consulta: 22 de gener de 2026]. ISSN: 2469-9926. [Disponible a: https://hdl.handle.net/2445/148458]

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