Probing Slow Relaxation and Many-Body Localization in Two-Dimensional Quasiperiodic Systems
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Authors
Bordia, Pranjal
Lueschen, Henrik
Scherg, Sebastian
Gopalakrishnan, Sarang
Knap, Michael
Bloch, Immanuel
Publication Date
2017Journal Title
PHYSICAL REVIEW X
ISSN
2160-3308
Publisher
American Physical Society (APS)
Volume
7
Issue
4
Number
ARTN 041047
Type
Article
Metadata
Show full item recordCitation
Bordia, P., Lueschen, H., Scherg, S., Gopalakrishnan, S., Knap, M., Schneider, U., & Bloch, I. (2017). Probing Slow Relaxation and Many-Body Localization in Two-Dimensional Quasiperiodic Systems. PHYSICAL REVIEW X, 7 (4. ARTN 041047) https://doi.org/10.1103/PhysRevX.7.041047
Abstract
In a many-body localized (MBL) quantum system, the ergodic hypothesis breaks down, giving rise to a fundamentally new many-body phase. Whether and under which conditions MBL can occur in higher dimensions remains an outstanding challenge both for experiments and theory. Here, we experimentally
explore the relaxation dynamics of an interacting gas of fermionic potassium atoms loaded in a twodimensional optical lattice with different quasiperiodic potentials along the two directions. We observe a dramatic slowing down of the relaxation for intermediate disorder strengths.
Furthermore, beyond a critical disorder strength, we see negligible relaxation on experimentally accessible time scales, indicating a possible transition into a two-dimensional MBL phase. Our experiments reveal a distinct interplay of interactions, disorder, and dimensionality and provide insights into regimes where controlled theoretical approaches are scarce.
Keywords
Atomic and Molecular Physics, Condensed Matter Physics
Identifiers
External DOI: https://doi.org/10.1103/PhysRevX.7.041047
This record's URL: https://www.repository.cam.ac.uk/handle/1810/279783
Rights
Attribution 4.0 International (CC BY 4.0)
Licence URL: https://creativecommons.org/licenses/by/4.0/
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