Multiple Self-Organized Phases and Spatial Solitons in Cold Atoms Mediated by Optical Feedback

We study the transverse self-structuring of cold atomic clouds with effective atomic interactions mediated by a coherent driving beam retroreflected by means of a single mirror. The resulting self-structuring due to optomechanical forces is much richer than that of an effective-Kerr medium, displayi...

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Veröffentlicht in:Physical review letters 2021-05, Vol.126 (20), p.1-203201, Article 203201
Hauptverfasser: Baio, Giuseppe, Robb, Gordon R. M., Yao, Alison M., Oppo, Gian-Luca, Ackemann, Thorsten
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Sprache:eng
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Zusammenfassung:We study the transverse self-structuring of cold atomic clouds with effective atomic interactions mediated by a coherent driving beam retroreflected by means of a single mirror. The resulting self-structuring due to optomechanical forces is much richer than that of an effective-Kerr medium, displaying hexagonal, stripe and honeycomb phases depending on the interaction strength parametrized by the linear susceptibility. Phase domains are described by Ginzburg-Landau amplitude equations with real coefficients. In the stripe phase the system recovers inversion symmetry. Moreover, the subcritical character of the honeycomb phase allows for light-density feedback solitons functioning as self-sustained dark atomic traps with motion controlled by phase gradients in the driving beam.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.126.203201