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Odd-parity effect and scale-dependent viscosity in atomic quantum gases

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2025

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Gran, Ulf
Hofmann, Johannes

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Communications Physics. Springer. 2025, 8, 319. eISSN 2399-3650. Verfügbar unter: doi: 10.1038/s42005-025-02231-w

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Two-dimensional electron gases are predicted to possess an anomalous “tomographic” transport regime that is marked by an odd-even effect in the relaxation times, with odd-parity deformations of the Fermi surface becoming long-lived in comparison to even-parity ones. In this work, we establish that neutral two-component atomic Fermi gases also exhibit this tomographic effect. By diagonalizing the Fermi liquid collision integral, we identify odd-parity modes with anomalously long lifetimes below temperatures T≤0.15TF, which is within reach of cold atom experiments. Furthermore, in contrast to electron gases, we find that the odd-even effect in neutral gases is widely tuneable with interactions along the BCS-BEC crossover and is suppressed on the BEC side. We propose as an experimental signature of the odd-even effect the damping rate of quadrupole oscillations, which is anomalously enhanced due to the presence of long-lived odd-parity modes. Our findings suggest that the dynamics of two-dimensional Fermi gases is richer than previously thought and should include additional long-lived modes.

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ISO 690MAKI, Jeffrey, Ulf GRAN, Johannes HOFMANN, 2025. Odd-parity effect and scale-dependent viscosity in atomic quantum gases. In: Communications Physics. Springer. 2025, 8, 319. eISSN 2399-3650. Verfügbar unter: doi: 10.1038/s42005-025-02231-w
BibTex
@article{Maki2025-08-06Oddpa-74517,
  title={Odd-parity effect and scale-dependent viscosity in atomic quantum gases},
  year={2025},
  doi={10.1038/s42005-025-02231-w},
  volume={8},
  journal={Communications Physics},
  author={Maki, Jeffrey and Gran, Ulf and Hofmann, Johannes},
  note={Article Number: 319}
}
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