On the Stability of the Repulsive Fermi Gas with Contact Interactions
arXiv:2204.03644 · doi:10.1103/PhysRevLett.129.203402
Abstract
We report the creation and the study of the stability of a repulsive quasi-homogeneous spin- Fermi gas with contact interactions. For the range of scattering lengths explored, the dominant mechanism of decay is a universal three-body recombination towards a Feshbach bound state. We observe that the recombination coefficient , where the first factor, the average kinetic energy per particle , arises from a three-body threshold law, and the second one from the universality of recombination. Both scaling laws are consequences of Pauli blocking effects in three-body collisions involving two identical fermions. As a result of the interplay between Fermi statistics and the momentum dependence of the recombination process, the system exhibits non-trivial temperature dynamics during recombination, alternatively heating or cooling depending on its initial quantum degeneracy. The measurement of provides an upper bound for the interaction strength achievable in equilibrium for a uniform repulsive Fermi gas.
References in corpus (21)
- Collisional stability of a three-component degenerate Fermi gas
- Itinerant Ferromagnetism in a Fermi Gas of Ultracold Atoms
- Exploring an ultracold Fermi-Fermi mixture: Interspecies Feshbach resonances and scattering properties of 6Li and 40K
- Three-body recombination in a three-state Fermi gas with widely tunable interactions
- Emergence of coherence in a uniform quasi-two-dimensional Bose gas
- Repulsive Fermi polarons in a resonant mixture of ultracold Li atoms
- Quantum degenerate two-species Fermi-Fermi mixture coexisting with a Bose-Einstein condensate
- Homogeneous Atomic Fermi Gases
- Observation of heteronuclear atomic Efimov resonances
- Observation of Efimov Resonances in a Mixture with Extreme Mass Imbalance
- Quantum Gases in Optical Boxes
- Excitation spectra and rf-response near the polaron-to-molecule transition from the functional renormalization group
- Efimov Physics in Cold Atoms
- Scattering Length Scaling Laws for Ultracold Three-Body Collisions
- Collisions of ultracold molecules in bright and dark optical dipole traps
- Universal Scaling Laws in the Dynamics of a Homogeneous Unitary Bose Gas
- Itinerant ferromagnetism in an atomic Fermi gas: Influence of population imbalance
- Itinerant ferromagnetism in a Fermi gas with contact interaction: Magnetic properties in a dilute Hubbard model
- Absence of heating in a uniform Fermi gas created by periodic driving
- Exploring emergent heterogeneous phases in strongly repulsive Fermi gases
- Can three-body recombination purify a quantum gas?
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- Observation of the Fermionic Joule-Thomson Effect
- Loss features in ultracold Dy gases: two- versus three-body processes
- Beyond universality in repulsive SU(N) Fermi gases
- Universal trimers with p-wave interactions and the faux-Efimov effect
- Probing Goldstino excitation through the tunneling transport in a Bose-Fermi mixture with explicitly broken supersymmetry
- Spin transport between polarized Fermi gases near the ferromagnetic phase transition
- Three-body contact for fermions. I. General relations
- Magnonic spin current shot noise in an itinerant Fermi gas
- Emergence of Sound in a Tunable Fermi Fluid
- Dispersion of first sound in a weakly interacting ultracold Fermi liquid
- Mechanisms of anomalous three-body loss in a population-imbalanced three-component Fermi gas
- Probing non-Gaussian correlations through entanglement generation in a many-body quantum system