Theory of Photoemission-type Experiment in the BCS-BEC Crossover Regime of a Superfluid Fermi Gas
arXiv:1105.1459 · doi:10.1109/ISAS.2011.5960915
Abstract
We theoretically investigate the recent photoemission-type experiment on K Fermi gases done by JILA group. Including pairing fluctuations within a strong-coupling -matrix theory, as well as effects of a harmonic trap within the local density approximation, we calculate photoemission spectra in the BCS (Bardeen-Cooper-Schrieffer)-BEC (Bose-Einstein condensation) crossover region. We show that the energy resolution of the current photoemission experiment is enough to detect the pseudogap phenomenon. We also show how the pseudogap in single-particle excitations continuously changes into the superfluid gap, as one decreases the temperature below the superfluid phase transition temperature. Our results would be useful for the study of single-particle properties of ultracold Fermi gases in the BCS-BEC crossover.
6 pages, 6 figures
References in corpus (9)
- Many-Body Physics with Ultracold Gases
- Theory of ultracold Fermi gases
- Scanning tunneling spectroscopy of high-temperature superconductors
- Using photoemission spectroscopy to probe a strongly interacting Fermi gas
- Observation of pseudogap behavior in a strongly interacting Fermi gas
- BCS-BEC crossover at finite temperature in the broken-symmetry phase
- Pseudo-gap pairing in ultracold Fermi atoms
- Superfluid density of states and pseudogap phenomenon in the BCS-BEC crossover regime of a superfluid Fermi gas
- Photoemission spectrum and effect of inhomogeneous pairing fluctuations in the BCS-BEC crossover regime of an ultracold Fermi gas