Emergence of Sound in a Tunable Fermi Fluid
arXiv:2407.13769 · doi:10.1103/PhysRevX.15.011074
Abstract
Landau's Fermi-liquid (FL) theory has been successful at the phenomenological description of the normal phase of many different Fermi systems. Using a dilute atomic Fermi fluid with tunable interactions, we investigate the microscopic basis of Landau's theory with a system describable from first principles. We study transport properties of an interacting Fermi gas by measuring its density response to a periodic external perturbation. In an ideal Fermi gas, we measure for the first time the celebrated Lindhard function. As the system is brought from the collisionless to the hydrodynamic regime, we observe the emergence of sound, and find that the experimental observations are quantitatively understood with a first-principle transport equation for the FL. When the system is more strongly interacting, we find deviations from such predictions. Finally, we observe the shape of the quasiparticle excitations directly from momentum-space tomography and see how it evolves from the collisionless to the collisional regime. Our study establishes this system as a clean platform for studying Landau's theory of the FL and paves the way for extending the theory to more exotic conditions, such as nonlinear dynamics and FLs with strong correlations in versatile settings.
References in corpus (19)
- Theory of ultracold Fermi gases
- Observation of Fermi Polarons in a Tunable Fermi Liquid of Ultracold Atoms
- Quantum degenerate dipolar Fermi gas
- Thermodynamics of the BCS-BEC crossover
- Repulsive Fermi polarons in a resonant mixture of ultracold Li atoms
- Quantum critical behavior in magic-angle twisted bilayer graphene
- Goldstone mode and pair-breaking excitations in atomic Fermi superfluids
- Spectral response and contact of the unitary Fermi gas
- Observation of first and second sound in a BKT superfluid
- Observation of Cooper Pairs in a Mesoscopic 2D Fermi Gas
- Excitation Spectrum and Superfluid Gap of an Ultracold Fermi Gas
- Density-wave ordering in a unitary Fermi gas with photon-mediated interactions
- Thermography of the superfluid transition in a strongly interacting Fermi gas
- On the Stability of the Repulsive Fermi Gas with Contact Interactions
- Emergent interaction-driven elliptic flow of few fermionic atoms
- Momentum-resolved spectroscopy of a Fermi liquid
- Probing the optical conductivity of trapped charge-neutral quantum gases
- Collective flow of fermionic impurities immersed in a Bose-Einstein Condensate
- Observation of the Fermionic Joule-Thomson Effect