Quasiparticle energy in a strongly interacting homogeneous Bose-Einstein condensate
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 the shift of the excitation resonance from the free-particle energy changes sign from positive to negative. For an excitation with wavenumber , this sign change occurs at , in agreement with the Feynman energy relation and the static structure factor expressed in terms of the two-body contact. For 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.
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