English

Damping in 2D and 3D dilute Bose gases

Other Condensed Matter 2015-05-13 v3

Abstract

Damping in 2D and 3D dilute gases is investigated using both the hydrodynamical approach and the Hartree-Fock-Bogoliubov (HFB) approximation . We found that the both methods are good for the Beliaev damping at zero temperature and Landau damping at very low temperature, however, at high temperature, the hydrodynamical approach overestimates the Landau damping and the HFB gives a better approximation. This result shows that the comparison of the theoretical calculation using the hydrodynamical approach and the experimental data for high temperature done by Vincent Liu (PRL {\bf21} 4056 (1997)) is not proper. For two-dimensional systems, we show that the Beliaev damping rate is proportional to k3k^3 and the Landau damping rate is proportional to T2 T^2 for low temperature and to TT for high temperature. We also show that in two dimensions the hydrodynamical approach gives the same result for zero temperature and for low temperature as HFB, but overestimates the Landau damping for high temperature.

Cite

@article{arxiv.0809.3632,
  title  = {Damping in 2D and 3D dilute Bose gases},
  author = {Ming-Chiang Chung and Aranya B. Bhattacherjee},
  journal= {arXiv preprint arXiv:0809.3632},
  year   = {2015}
}

Comments

11 pages, 4 figures

R2 v1 2026-06-21T11:22:39.873Z