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Phase Diagram and Self-Organizing Dynamics in a Thermal Ensemble of Strongly Interacting Rydberg Atoms

Ding, Dong-Sheng; Busche, Hannes; Shi, Bao-Sen; Guo, Guang-Can; Adams, Charles S.

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Authors

Dong-Sheng Ding

Hannes Busche

Bao-Sen Shi

Guang-Can Guo



Abstract

Far-from-equilibrium dynamics that lead to self-organization are highly relevant to complex dynamical systems not only in physics but also in life, earth, and social sciences. However, it is challenging to find systems with sufficiently controllable parameters that allow quantitatively modeling of emergent properties. Here, we study a nonequilibrium phase transition and observe signatures of self-organized criticality in a dilute thermal vapor of atoms optically excited to strongly interacting Rydberg states. Electromagnetically induced transparency provides excellent control over the population dynamics and enables high-resolution probing of the driven-dissipative dynamics, which also exhibits phase bistability. Increased sensitivity compared to previous work allows us to reconstruct the complete phase diagram, including in the vicinity of the critical point. We observe that interaction-induced energy shifts and enhanced decay only occur in one of the phases above a critical Rydberg population. This case limits the application of generic mean-field models; however, a modified, threshold-dependent approach is in qualitative agreement with experimental data. Near threshold, we observe self-organized dynamics in the form of population jumps that return the density to a critical value.

Citation

Ding, D., Busche, H., Shi, B., Guo, G., & Adams, C. S. (2020). Phase Diagram and Self-Organizing Dynamics in a Thermal Ensemble of Strongly Interacting Rydberg Atoms. Physical Review X, 10(2), Article 021023. https://doi.org/10.1103/physrevx.10.021023

Journal Article Type Article
Acceptance Date Mar 17, 2020
Online Publication Date Apr 29, 2020
Publication Date Apr 30, 2020
Deposit Date May 6, 2020
Publicly Available Date May 6, 2020
Journal Physical Review X
Publisher American Physical Society
Peer Reviewed Peer Reviewed
Volume 10
Issue 2
Article Number 021023
DOI https://doi.org/10.1103/physrevx.10.021023

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http://creativecommons.org/licenses/by/4.0/

Copyright Statement
Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI.





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