Abstract
Spontaneous pattern formation from a spatially homogeneous background of nonlinear systems driven out of equilibrium is a widespread phenomenon in nature. However, similar phenomena and their physical realization in nonlinear systems with external potentials of gain and loss remain a challenge. We propose a scheme to realize a new type of spatial pattern formation through the self-organization of laser light in a Rydberg-dressed atomic gas with self-defocusing Kerr nonlinearity as well as non-Hermitian optical potentials. We show that by a suitable design of control and assistant laser fields, non-Hermitian optical potentials with or without parity-time (PT) symmetry for the probe laser field can be created. We find that through the nonlocal Kerr nonlinearity contributed by the long-range atom–atom interaction, a constant-intensity wave (CIW) may undergo modulation instability and induce spontaneous symmetry breaking, resulting in the emergence of various self-organized optical structures, which can be actively manipulated by tuning the nonlocality degree of the Kerr nonlinearity and by designing the non-Hermitian optical potentials. The results reported here open a door for developing non-Hermitian nonlinear optics.
Funder
Hubei University of Automotive Technology
Henan Normal University
Subject
Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics
Reference72 articles.
1. Les tourbillons cellulaires dans une nappe liquide—Méthodes optiques d’observation et d’enregistrement;J. Phys. Theor. Appl.,1901
2. Stability of a viscous liquid contained between two rotating cylinders;Philos. Trans. R. Soc. Lond. Ser. A,1923
3. The disintegration of wave trains on deep water;J. Fluid Mech.,1967
4. Murray, J.D. (1993). Mathematical Biology II: Spatial Models and Biomedical Applications, Springer. [3rd ed.].
5. Localized vegetation patterns, fairy circles, and localized patches in arid landscapes;Phys. Rev. E,2015
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