We investigate the phase diagram of asymmetric two-component Fermi gases at zero temperature as a function of polarization and interaction strength. The equations of state of the uniform superfluid and normal phase are determined using quantum Monte Carlo simulations. We find three different mixed states, where the superfluid and the normal phase coexist in equilibrium, corresponding to phase separation between (a) the polarized superfluid and the fully polarized normal gas, (b) the polarized superfluid and the partially polarized normal gas, and (c) the unpolarized superfluid and the partially polarized normal gas. © 2008 The American Physical Society
Motivated by potential realizations in cold-atom or cold-molecule systems, we have performed quantum...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
Strongly coupled quantum matter displays a rich phenomenology including phase transitions and often ...
We investigate the phase diagram of asymmetric two-component Fermi gases at zero temperature as a fu...
We study the zero temperature properties of a trapped polarized Fermi gas at unitarity by assuming p...
We report the observation of pairing in a gas of atomic fermions with unequal numbers of two compone...
Abstract: The polarized Fermi gas, which has recently been realized in ultra-cold atomic gases where...
Based on the integrable Gaudin model and local density approximation, we discuss the ground state of...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We investigate the finite-temperature properties of an ultracold atomic Fermi gas with spin populati...
In this thesis we first review the theory of the normal state of the unitary Fermi gas at T = 0 and ...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
The polarization produced by the relative displacement of the potentials trapping two spin species o...
On the basis of the phase diagram of the uniform system, we calculate the density profiles of a trap...
Motivated by potential realizations in cold-atom or cold-molecule systems, we have performed quantum...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
Strongly coupled quantum matter displays a rich phenomenology including phase transitions and often ...
We investigate the phase diagram of asymmetric two-component Fermi gases at zero temperature as a fu...
We study the zero temperature properties of a trapped polarized Fermi gas at unitarity by assuming p...
We report the observation of pairing in a gas of atomic fermions with unequal numbers of two compone...
Abstract: The polarized Fermi gas, which has recently been realized in ultra-cold atomic gases where...
Based on the integrable Gaudin model and local density approximation, we discuss the ground state of...
We present a systematic study of quantum phases in a one-dimensional spin-polarized Fermi gas. Three...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We investigate the finite-temperature properties of an ultracold atomic Fermi gas with spin populati...
In this thesis we first review the theory of the normal state of the unitary Fermi gas at T = 0 and ...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
The polarization produced by the relative displacement of the potentials trapping two spin species o...
On the basis of the phase diagram of the uniform system, we calculate the density profiles of a trap...
Motivated by potential realizations in cold-atom or cold-molecule systems, we have performed quantum...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
Strongly coupled quantum matter displays a rich phenomenology including phase transitions and often ...