English

Association of Atoms into Universal Dimers using an Oscillating Magnetic Field

Quantum Gases 2015-03-18 v1

Abstract

In a system of ultracold atoms near a Feshbach resonance, pairs of atoms can be associated into universal dimers by an oscillating magnetic field with frequency near that determined by the dimer binding energy. We present a simple expression for the transition rate that takes into account many-body effects through a transition matrix element of the contact. In a thermal gas, the width of the peak in the transition rate as a function of the frequency is determined by the temperature. In a dilute Bose-Einstein condensate of atoms, the width is determined by the inelastic scattering rates of a dimer with zero-energy atoms. Near an atom-dimer resonance, there is a dramatic increase in the width from inelastic atom-dimer scattering and from atom-atom-dimer recombination. The recombination contribution provides a signature for universal tetramers that are Efimov states consisting of two atoms and a dimer.

Keywords

Cite

@article{arxiv.1406.7313,
  title  = {Association of Atoms into Universal Dimers using an Oscillating Magnetic Field},
  author = {Christian Langmack and D. Hudson Smith and Eric Braaten},
  journal= {arXiv preprint arXiv:1406.7313},
  year   = {2015}
}

Comments

5 pages, 2 figures