We study, in a fully nonperturbative calculation, a dilute system of spin 1/2 interacting fermions, characterized by an infinite scattering length at finite temperatures. Various thermodynamic properties and the condensate fraction are calculated and we also determine the critical temperature for the superfluid-normal phase transition in this regime. The thermodynamic behavior appears as a rather surprising and unexpected mélange of fermionic and bosonic features. The thermal response of a spin 1/2 fermion at the BCS-BEC crossover should be classified as that of a new type of superfluid
Thermodynamic properties of a fermionic system close to the unitarity limit, where the 2-body scatte...
Using ab initio lattice methods, we calculate the finite temperature thermodynamics of homogeneous t...
A novel lattice approach is presented for studying systems comprising a large number of interacting ...
We study, in a fully nonperturbative calculation, a dilute system of spin 1/2 interacting fermions, ...
The quantum Monte Carlo method for spin- 1 2 fermions at finite temperature is formulated for dilute...
The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component ...
The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component ...
The energy shift due to the interaction of two particles in a large box is proportional to the free ...
A quantity known as the contact is a fundamental thermodynamic property of quantum many-body systems...
The thermodynamic functions of a Fermi gas with spin population imbalance are studied in the tempera...
The strongly correlated regime of the crossover from Bardeen-Cooper-Schrieffer pairing to Bose-Einst...
We show that the thermodynamic properties of an atomic Fermi gas near the unitarity limit for Feshba...
Strongly correlated Fermi systems with pairing interactions become superfluid below a critical tempe...
We present an ab initio determination of spin responses of the unitary Fermi gas, based on finite te...
The thermodynamic functions of a Fermi gas with spin population imbalance are studied in the tempera...
Thermodynamic properties of a fermionic system close to the unitarity limit, where the 2-body scatte...
Using ab initio lattice methods, we calculate the finite temperature thermodynamics of homogeneous t...
A novel lattice approach is presented for studying systems comprising a large number of interacting ...
We study, in a fully nonperturbative calculation, a dilute system of spin 1/2 interacting fermions, ...
The quantum Monte Carlo method for spin- 1 2 fermions at finite temperature is formulated for dilute...
The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component ...
The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component ...
The energy shift due to the interaction of two particles in a large box is proportional to the free ...
A quantity known as the contact is a fundamental thermodynamic property of quantum many-body systems...
The thermodynamic functions of a Fermi gas with spin population imbalance are studied in the tempera...
The strongly correlated regime of the crossover from Bardeen-Cooper-Schrieffer pairing to Bose-Einst...
We show that the thermodynamic properties of an atomic Fermi gas near the unitarity limit for Feshba...
Strongly correlated Fermi systems with pairing interactions become superfluid below a critical tempe...
We present an ab initio determination of spin responses of the unitary Fermi gas, based on finite te...
The thermodynamic functions of a Fermi gas with spin population imbalance are studied in the tempera...
Thermodynamic properties of a fermionic system close to the unitarity limit, where the 2-body scatte...
Using ab initio lattice methods, we calculate the finite temperature thermodynamics of homogeneous t...
A novel lattice approach is presented for studying systems comprising a large number of interacting ...