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    Observation of Sine-Gordon-like Solitons in a Spinor Bose-Einstein Condensate

    Yannick Deller1,*, Alexander Schmutz1, Raphael Schäfer1, Alexander Flamm1, Florian Schmitt1, Ido Siovitz1, Thomas Gasenzer1, Panayotis G. Kevrekidis2,3, Helmut Strobel1 et al.

    Markus K. Oberthaler1

    • *Contact author: Sine-Gordon_Solitons@matterwave.de

    Phys. Rev. Lett. 137, 053401 – Published 27 July, 2026

    DOI: https://doi.org/10.1103/bpl2-y7ls

    Abstract

    We experimentally generate sine-Gordon-like solitons in a spin-1 spinor BEC utilizing a robust and reproducible local phase-imprinting scheme. We find that the soliton velocity can be tuned by the effective quadratic Zeeman shift. This enables the investigation of controlled soliton interactions, in which we observe the characteristic elastic collision behavior of the integrable sine-Gordon model. The spatial displacement—the so-called phase shift—between incoming and outgoing solitons, the signature of their pairwise interaction, is found to be in quantitative agreement with numerical spin-1 simulations within the error bars. These results establish spinor BECs as a highly controllable experimental platform for studying aspects of the dynamics of sine-Gordon-like models.

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