Two-Dimensional Supersolid Formation in Dipolar Condensates
- verfasst von
- T. Bland, E. Poli, C. Politi, L. Klaus, M. A. Norcia, F. Ferlaino, L. Santos, R. N. Bisset
- Abstract
Dipolar condensates have recently been coaxed to form the long-sought supersolid phase. While one-dimensional supersolids may be prepared by triggering a roton instability, we find that such a procedure in two dimensions (2D) leads to a loss of both global phase coherence and crystalline order. Unlike in 1D, the 2D roton modes have little in common with the supersolid configuration. We develop a finite-temperature stochastic Gross-Pitaevskii theory that includes beyond-mean-field effects to explore the formation process in 2D and find that evaporative cooling directly into the supersolid phase - hence bypassing the first-order roton instability - can produce a robust supersolid in a circular trap. Importantly, the resulting supersolid is stable at the final nonzero temperature. We then experimentally produce a 2D supersolid in a near-circular trap through such an evaporative procedure. Our work provides insight into the process of supersolid formation in 2D and defines a realistic path to the formation of large two-dimensional supersolid arrays.
- Organisationseinheit(en)
-
Institut für Theoretische Physik
QuantumFrontiers
- Externe Organisation(en)
-
Austrian Academy of Sciences
Universität Innsbruck
- Typ
- Artikel
- Journal
- Physical review letters
- Band
- 128
- ISSN
- 0031-9007
- Publikationsdatum
- 13.05.2022
- Publikationsstatus
- Veröffentlicht
- Peer-reviewed
- Ja
- ASJC Scopus Sachgebiete
- Physik und Astronomie (insg.)
- Elektronische Version(en)
-
https://doi.org/10.1103/PhysRevLett.128.195302 (Zugang:
Geschlossen)
https://doi.org/10.48550/arXiv.2107.06680 (Zugang: Offen)