English

Quasiparticle energy in a strongly interacting homogeneous Bose-Einstein condensate

Quantum Gases 2017-05-30 v1 Statistical Mechanics Atomic Physics Quantum Physics

Abstract

Using two-photon Bragg spectroscopy, we study the energy of particle-like excitations in a strongly interacting homogeneous Bose-Einstein condensate, and observe dramatic deviations from Bogoliubov theory. In particular, at large scattering length aa the shift of the excitation resonance from the free-particle energy changes sign from positive to negative. For an excitation with wavenumber qq, this sign change occurs at a4/(πq)a \approx 4/(\pi q), in agreement with the Feynman energy relation and the static structure factor expressed in terms of the two-body contact. For a3/qa \gtrsim 3/q we also see a breakdown of this theory, and better agreement with calculations based on the Wilson operator product expansion. Neither theory explains our observations across all interaction regimes, inviting further theoretical efforts.

Keywords

Cite

@article{arxiv.1702.02935,
  title  = {Quasiparticle energy in a strongly interacting homogeneous Bose-Einstein condensate},
  author = {Raphael Lopes and Christoph Eigen and Adam Barker and Konrad G. H. Viebahn and Martin Robert-de-Saint-Vincent and Nir Navon and Zoran Hadzibabic and Robert P. Smith},
  journal= {arXiv preprint arXiv:1702.02935},
  year   = {2017}
}

Comments

4 pages, 4 figures

R2 v1 2026-06-22T18:14:11.667Z