Radio frequency spectra of Feshbach molecules in quasi-two dimensional geometries
arXiv:1204.2704 · doi:10.1103/PhysRevA.85.061604
Abstract
The line shape of radio frequency spectra of tightly bound Feshbach molecules in strong transverse confinement can be described by a simple analytic formula that includes final state interactions. By direct comparison to experimental data, we clarify the role of effective range corrections to two-body bound-state energies in lower dimensions.
8 pages, published version
References in corpus (8)
- Many-Body Physics with Ultracold Gases
- Attractive and repulsive Fermi polarons in two dimensions
- Radiofrequency spectroscopy of a strongly interacting two-dimensional Fermi gas
- Observation of a two-dimensional Fermi gas of atoms
- Crossover from 2D to 3D in a weakly interacting Fermi gas
- Polaron-molecule transitions in a two-dimensional Fermi gas
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Cited by in corpus (9)
- Pairing and radio-frequency spectroscopy in two-dimensional Fermi gases
- Quasi-two-dimensional Fermi gases at finite temperature
- Dimensional Effects on the Momentum distribution of Bosonic Trimer States
- Two-channel model description of confinement-induced Feshbach molecules
- Path-Integral Derivation of the Non-relativistic Scale Anomaly
- Many-particle Systems in One Dimension in the Harmonic Approximation
- Scattering Hypervolume of Fermions in Two Dimensions
- Causality and dimensionality in geometric scattering
- Radio-Frequency Spectroscopy and the Dimensional Crossover in Interacting Spin-Polarized Fermi Gases