Thermodynamic contacts and breathing mode physics of 1D p-wave Fermi gases in the high temperature limit
arXiv:2110.05725 · doi:10.1103/PhysRevA.104.063314
Abstract
An important tool for understanding the effects of interactions in harmonically trapped atomic gases is the examination of their collective modes. One such mode is the breathing or monopole mode, which is special as it is constrained to occur at twice the harmonic trapping frequency when the interactions are scale invariant. When the interactions are not scale invariant, the frequency of the breathing mode will deviate from twice the trap frequency. The deviation itself depends on the thermodynamic contacts, which describe how the energy changes with the interactions. In this work I examine how the thermodynamic contacts and the breathing mode frequency of a spin-polarized one-dimensional (1D) p-wave Fermi gas depend on the 1D scattering volume, , and the effective range, , in the high temperature limit. Such dynamics can be studied in experiments and provide a tool for understanding how the dynamics depend on interactions with a finite effective range.
10 pages, 3 figures
References in corpus (19)
- Theory of ultracold Fermi gases
- Nonrelativistic conformal field theories
- Collective Modes in a Unitary Fermi Gas across the Superfluid Phase Transition
- Breathing mode of two-dimensional atomic Fermi gases in harmonic traps
- Bose-Fermi dualities for arbitrary one-dimensional quantum systems in the universal low energy regime
- Collisional loss of one-dimensional fermions near a -wave Feshbach resonance
- High-momentum distribution with subleading tail in the odd-wave interacting one-dimensional Fermi gases
- Field-theoretical aspects of one-dimensional Bose and Fermi gases with contact interactions
- Universal duality transformations in interacting one-dimensional quantum systems
- Comparative study of one-dimensional Bose and Fermi gases with contact interactions from the viewpoint of universal relations for correlation functions
- Stretching p-wave molecules by transverse confinements
- Probing open- and closed-channel p-wave resonances
- Unitary -wave Fermi gas in one dimension
- Two-body state with p-wave interaction in one-dimensional waveguides under transversely anisotropic confinement
- The Role of the Effective Range in Resonantly Interacting Fermi Gases: How Breaking Scale Symmetry Affects the Bulk Viscosity
- Far-Away-From-Equilibrium Quantum Critical Conformal Dynamics: Reversibility, Thermalization, and Hydrodynamics
- Ground-state properties of dilute spinless fermions in fractional dimensions
- P-wave contacts of quantum gases in quasi-one-dimensional and quasi-two-dimensional traps
- Suppression of Three-Body Loss Near a p-Wave Resonance Due to Quasi-1D Confinement
Cited by in corpus (5)
- Emergent s-wave interactions between identical fermions in quasi-one-dimensional geometries
- Stability against three-body clustering in one-dimensional spinless p-wave fermions
- Transport in p-wave interacting Fermi gases
- Viscous Flow in a 1D Spin-Polarized Fermi Gas: the Role of Integrability on Viscosity
- Radio-Frequency Spectroscopy and the Dimensional Crossover in Interacting Spin-Polarized Fermi Gases