We study the zero sound and the first sound in a dilute and ultracold disk-shaped normal Fermi gas with a strong harmonic confinement along the axial direction and uniform in the two planar directions. Working at zero temperature we calculate the chemical potential $\mu$ of the fermionic fluid as a function of the uniform planar density $\rho$ and find that $\mu$ changes its slope in correspondence to the filling of harmonic axial modes (shell effects). Within the linear response theory, and under the random phase approximation, we calculate the velocity $c^{0}_s$ of the zero sound. We find that also $c^0_s$ changes its slope in correspondence of the filling of the harmonic axial modes and that this effect depends on the Fermi-Fermi scatter...
Quasiparticles and collective modes are two fundamental aspects that characterize quantum matter in ...
We present an experimental and theoretical study of the phonon mode in a unitary Fermi gas. Using tw...
We review our theoretical results of the sound propagation in two-dimensional (2D) systems of ultrac...
We investigate the first sound of a normal dilute and ultracold two-component Fermi gas in a cylindr...
We consider a weakly-interacting fermionic gas of alkali-metal atoms characterized by two hyperfine ...
We use hydrodynamic equations to study sound propagation in a superfluid Fermi gas at zero temperatu...
We calculate the damping γq of collective density oscillations (zero sound) in a one-dimensional Fe...
<p>A trapped Fermi gas near a collisional resonance provides a unique laboratory for testing many-bo...
Using a variational approach, we present the full solutions of the simplified one-dimensional two-fl...
© 2020 American Association for the Advancement of Science. All rights reserved. Transport of strong...
Transport of strongly interacting fermions governs modern materials -- from the high-$T_c$ cuprates ...
Sound propagation is a macroscopic manifestation of the interplay between the equilibrium thermodyna...
We investigate the propagation of density and temperature waves in a cylindrically trapped gas with ...
We investigate the low-temperature thermodynamics of the unitary Fermi gas by introducing a model ba...
We compare recent experimental results [Science 375, 528 (2022)] of the superfluid unitary Fermi gas...
Quasiparticles and collective modes are two fundamental aspects that characterize quantum matter in ...
We present an experimental and theoretical study of the phonon mode in a unitary Fermi gas. Using tw...
We review our theoretical results of the sound propagation in two-dimensional (2D) systems of ultrac...
We investigate the first sound of a normal dilute and ultracold two-component Fermi gas in a cylindr...
We consider a weakly-interacting fermionic gas of alkali-metal atoms characterized by two hyperfine ...
We use hydrodynamic equations to study sound propagation in a superfluid Fermi gas at zero temperatu...
We calculate the damping γq of collective density oscillations (zero sound) in a one-dimensional Fe...
<p>A trapped Fermi gas near a collisional resonance provides a unique laboratory for testing many-bo...
Using a variational approach, we present the full solutions of the simplified one-dimensional two-fl...
© 2020 American Association for the Advancement of Science. All rights reserved. Transport of strong...
Transport of strongly interacting fermions governs modern materials -- from the high-$T_c$ cuprates ...
Sound propagation is a macroscopic manifestation of the interplay between the equilibrium thermodyna...
We investigate the propagation of density and temperature waves in a cylindrically trapped gas with ...
We investigate the low-temperature thermodynamics of the unitary Fermi gas by introducing a model ba...
We compare recent experimental results [Science 375, 528 (2022)] of the superfluid unitary Fermi gas...
Quasiparticles and collective modes are two fundamental aspects that characterize quantum matter in ...
We present an experimental and theoretical study of the phonon mode in a unitary Fermi gas. Using tw...
We review our theoretical results of the sound propagation in two-dimensional (2D) systems of ultrac...