<p><strong>Figure 1.</strong> The lowest order particle–hole diagram which generates the induced interaction <em>g</em><sub>ind</sub>(<em>p</em><sub>1</sub>, <em>p</em><sub>4</sub>). Arrowed and dashed lines describe fermionic propagators and the coupling <em>g</em> between the atoms, respectively.</p> <p><strong>Abstract</strong></p> <p>Motivated by the recent experimental realization of a candidate to the Fulde–Ferrell (FF) and the Larkin–Ovchinnikov (LO) states in one-dimensional (1D) atomic Fermi gases, we study the quantum phase transitions in these enigmatic, finite-momentum-paired superfluids. We focus on the FF state and investigate the effects of the induced interaction on the stability of the FFLO phase in homogeneous spin-imbalan...
We model the one-dimensional (1D) to three-dimensional (3D) crossover in a cylindrically trapped Fer...
The induced interaction among the majority spin species, due to the presence of the minority species...
Using a combination of results from exact mappings and from mean-field theory we explore the phase d...
<p><strong>Figure 4.</strong> Zero temperature phase diagram (schematic) as a function of the magnet...
<p><strong>Figure 2.</strong> Geometrical illustration of the Fermi surfaces of a 1D imbalanced gas ...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
The evolution of an attractive polarized two-component Fermi gas at zero temperature is analyzed as ...
The evolution of an attractive polarized two-component Fermi gas at zero temperature is analyzed as ...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We calculate the zero-temperature (T = 0) phase diagram of a polarized two-component Fermi gas in an...
We consider a gas of two species of fermions with population imbalance. Using the renormalization gr...
Ultracold atoms have become an essential tool in studying condensed matter phenomena. The advantage ...
We investigate the finite-temperature properties of an ultracold atomic Fermi gas with spin populati...
Based on the integrable Gaudin model and local density approximation, we discuss the ground state of...
Superconductivity and magnetism generally do not coexist. Changing the relative number of up and dow...
We model the one-dimensional (1D) to three-dimensional (3D) crossover in a cylindrically trapped Fer...
The induced interaction among the majority spin species, due to the presence of the minority species...
Using a combination of results from exact mappings and from mean-field theory we explore the phase d...
<p><strong>Figure 4.</strong> Zero temperature phase diagram (schematic) as a function of the magnet...
<p><strong>Figure 2.</strong> Geometrical illustration of the Fermi surfaces of a 1D imbalanced gas ...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
The evolution of an attractive polarized two-component Fermi gas at zero temperature is analyzed as ...
The evolution of an attractive polarized two-component Fermi gas at zero temperature is analyzed as ...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We calculate the zero-temperature (T = 0) phase diagram of a polarized two-component Fermi gas in an...
We consider a gas of two species of fermions with population imbalance. Using the renormalization gr...
Ultracold atoms have become an essential tool in studying condensed matter phenomena. The advantage ...
We investigate the finite-temperature properties of an ultracold atomic Fermi gas with spin populati...
Based on the integrable Gaudin model and local density approximation, we discuss the ground state of...
Superconductivity and magnetism generally do not coexist. Changing the relative number of up and dow...
We model the one-dimensional (1D) to three-dimensional (3D) crossover in a cylindrically trapped Fer...
The induced interaction among the majority spin species, due to the presence of the minority species...
Using a combination of results from exact mappings and from mean-field theory we explore the phase d...