Resonantly interacting -wave Fermi superfluid in two dimensions: Tan's contact and breathing mode
arXiv:1907.01765 · doi:10.1103/PhysRevA.100.023611
Abstract
Inspired by the renewed experimental activities on -wave resonantly interacting atomic Fermi gases, we theoretically investigate some experimental observables of such systems at zero temperature in two dimensions, using both mean-field theory and Gaussian pair fluctuation theory. These observables include the two -wave contact parameters and the breathing mode frequency, which can be readily measured in current cold-atom setups with K and Li atoms. We find that the many-body component of the two contact parameters exhibits a pronounced peak slightly above the resonance and consequently leads to a dip in the breathing mode frequency. In the resonance limit, we discuss the dependence of the equation of state and the breathing mode frequency on the dimensionless effective range of the interaction, , where is the Fermi wavevector and is the effective range. The breathing mode frequency deviates from the scale-invariant prediction of , where is the trapping frequency of the harmonic potential. This frequency shift is caused by the necessary existence of the effective range. In the small range limit, we predict that the mode frequency deviation at the leading order is given by, .
13 pages, 7 figures
References in corpus (34)
- Many-Body Physics with Ultracold Gases
- Non-Abelian Anyons and Topological Quantum Computation
- Theory of ultracold Fermi gases
- Generalized Virial Theorem and Pressure Relation for a strongly correlated Fermi gas
- Resonantly-paired fermionic superfluids
- Quantum Fluctuations in the Superfluid State of the BCS-BEC Crossover
- p-wave Feshbach molecules
- Equation of state of a superfluid Fermi gas in the BCS-BEC crossover
- Virial expansion for a strongly correlated Fermi gas
- Collective modes and ballistic expansion of a Fermi gas in the BCS-BEC crossover
- Anisotropic Fermi Superfluid via p-wave Feshbach Resonance
- Collisional Properties of p-Wave Feshbach Molecules
- Binding Energies of 6Li p-wave Feshbach Molecules
- Fermion Superfluids of Non-Zero Orbital Angular Momentum near Resonance
- Stability of the fermionic gases close to a p-wave Feshbach resonance
- Anomalous breaking of scale invariance in a two-dimensional Fermi gas
- Apparent low-energy scale invariance in two-dimensional Fermi gases
- Universal contact of strongly interacting fermions at finite temperatures
- Quantum anomaly and 2D-3D crossover in strongly interacting Fermi gases
- Short-range correlations and entropy in ultracold atomic Fermi gases
- Breathing mode of two-dimensional atomic Fermi gases in harmonic traps
- Reduced quantum anomaly in a quasi-2D Fermi superfluid: The significance of the confinement-induced effective range of interactions
- Large-momentum distribution of a polarized Fermi gas and p-wave contacts
- Scaling Law for Three-body Collisions in Identical Fermions with -wave Interactions
- Two-body relaxation in a Fermi gas at a p-wave Feshbach resonance
- Unitarity-limited behavior of three-body collisions in a p-wave interacting Fermi gas
- Sigature of the universal super Efimov Effect: three-body contact in two dimensional Fermi gases
- Collective modes of a two-dimensional Fermi gas at finite temperature
- A strongly interacting high partial wave Bose gas
- BCS-BEC quantum phase transition and collective excitations in two-dimensional Fermi gases with p- and d-wave pairings
- First and second sound of a unitary Fermi gas in highly oblate harmonic traps
- Strong-Coupling and Finite Temperature Effects on -wave Contacts
- Quantum fluctuations of a resonantly interacting -wave Fermi superfluid in two dimensions
- Kosterlitz-Thouless transition and vortex-antivortex lattice melting in two-dimensional Fermi gases with - or -wave pairing
Cited by in corpus (5)
- Emergent s-wave interactions between identical fermions in quasi-one-dimensional geometries
- Quantum Dynamics of Cold Atomic Gas with Symmetry
- Thermally stable p-wave repulsive Fermi polaron without a two-body bound state
- Thermodynamic contacts and breathing mode physics of 1D p-wave Fermi gases in the high temperature limit
- Elastic collision rates of spin-polarized fermions in two dimensions