KIP-Veröffentlichungen

Jahr 2023
Autor(en) Ido Siovitz, Stefan Lannig, Yannick Deller, Helmut Strobel, Markus K. Oberthaler, Thomas Gasenzer
Titel Universal Dynamics of Rogue Waves in a Quenched Spinor Bose Condensate
KIP-Nummer HD-KIP 23-114
KIP-Gruppe(n) F17,F20,F27
Dokumentart Paper
Quelle Phys. Rev. Lett. 131: 183402, 2023; arXiv:2304.09293 [cond-mat.quant-gas]
doi 10.1103/PhysRevLett.131.183402
Abstract (en)

Isolated many-body systems far from equilibrium may exhibit scaling dynamics with universal exponents indicating the proximity of the time-evolution to a non-thermal fixed point. We find universal dynamics connected with the occurrence of extreme wave excitations in the mutually coupled magnetic components of a spinor gas which propagate in an effectively random potential. The frequency of these rogue waves is affected by the time-varying spatial correlation length of the potential, giving rise to an additional exponent δc~1/3 for temporal scaling, which is different from the exponent βV~1/4 characterizing the scaling of the correlation length λ?VλtβV in time. As a result of the caustics, i.e., focusing events, real-time instanton defects appear in the Larmor phase of the spin-1 system as vortices in space and time. The temporal correlations governing the instanton occurrence frequency scale as tδI. This suggests that the universality class of a non-thermal fixed point could be characterized by different, mutually related exponents defining the evolution in time and space, respectively. Our results have a strong relevance for understanding pattern coarsening from first principles and potential implications for dynamics ranging from the early universe to geophysical dynamics and micro physics.

bibtex
@article{Siovitz2023ius,
  author   = {Siovitz, Ido and Lannig, Stefan and Deller, Yannick and Strobel, Helmut and Oberthaler, Markus K. and Gasenzer, Thomas},
  title    = {Universal Dynamics of Rogue Waves in a Quenched Spinor Bose Condensate},
  journal  = {Phys. Rev. Lett.},
  year     = {2023},
  volume   = {131},
  pages    = {183402},
  month    = {Nov},
  doi      = {10.1103/PhysRevLett.131.183402},
  url      = {https://arxiv.org/abs/2304.09293}
}
URL arXiv:2304.09293 [cond-mat.quant-gas]
URL Phys. Rev. Lett. 131: 183402, 2023
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