4.6 Article

Scaling properties of one-dimensional driven-dissipative condensates

期刊

PHYSICAL REVIEW B
卷 92, 期 15, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.92.155307

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资金

  1. Austrian Science Fund (FWF) through the START Grant [Y 581-N16]
  2. SFB FoQuS (FWF Project) [F4006-N16]
  3. Austrian Ministry of Science BMWF as part of the UniInfrastrukturprogramm of the Focal Point Scientific Computing at the University of Innsbruck
  4. German Research Foundation (DFG) [ZUK 64]
  5. European Research Council Synergy Grant UQUAM
  6. Israel Science Foundation
  7. Austrian Science Fund (FWF) [Y 581] Funding Source: researchfish

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We numerically investigate the scaling properties of a one-dimensional driven-dissipative condensate described by a stochastic complex Ginzburg-Landau equation (SCGLE). We directly extract the static and dynamical scaling exponents from the dynamics of the condensate's phase field, and find that both coincide with the ones of the one-dimensional Kardar-Parisi-Zhang (KPZ) equation. We furthermore calculate the spatial and the temporal two-point correlation functions of the condensate field itself. The decay of the temporal two-point correlator assumes a stretched-exponential form, providing further quantitative evidence for an effective KPZ description. Moreover, we confirm the observability of this nonequilibrium scaling for typical current experimental setups with exciton-polariton systems, if cavities with a reduced Q factor are used.

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