Self-bound crystals of antiparallel dipolar mixtures

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Arazo, M.; Gallemí, A.; Guilleumas, M.; Mayol, R.; Santos, L.: Self-bound crystals of antiparallel dipolar mixtures. In: Physical Review Research / American Physical Society 5 (2023), Nr. 4, 043038. DOI: https://doi.org/10.1103/physrevresearch.5.043038

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Abstract: 
Recent experiments have created supersolids of dipolar quantum droplets. The resulting crystals lack, however, a genuine cohesive energy and are maintained by the presence of an external confinement, bearing a resemblance to the case of ion Coulomb crystals. We show that a mixture of two antiparallel dipolar condensates allows for the creation of potentially large, self-bound crystals, which, resembling ionic crystals in solid-state physics, are maintained by the mutual dipolar attraction between the components, with no need of transversal confinement. This opens intriguing possibilities, including three-dimensionally self-bound droplet-ring structures, stripe/labyrinthic patterns, and self-bound crystals of droplets surrounded by an interstitial superfluid, resembling the case of superfluid Helium in porous media.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2023
Appears in Collections:Fakultät für Mathematik und Physik

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3 image of flag of Germany Germany 1 33.33%

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