We discuss the pseudogap regime in the unitary Fermi gas (UFG), with a particular emphasis on the auxiliary-field quantum Monte Carlo (AFMC) approach. We discuss possible signatures of the pseudogap, review experimental results, and survey analytic and quantum Monte Carlo techniques before focusing on AFMC calculations in the canonical ensemble. For the latter method, we discuss results for the heat capacity, condensate fraction, energy-staggering pairing gap, and spin susceptibility, and compare to experiment and results of other theoretical methods
Ultracold atomic Fermi gases present an opportunity to study strongly interacting fermionic systems...
The physics of the pseudogap state is intimately linked with the pairing mechanism that gives rise t...
In a Fermi superfluid increasing population imbalance leads initially to reduction of the ...
We discuss the pseudogap regime in the unitary Fermi gas (UFG), with a particular emphasis on the au...
Strongly correlated Fermi systems with pairing interactions become superfluid below a critical tempe...
Abstract In this chapter, we describe three related studies of the universal physics of two-componen...
The thermodynamic properties of the unitary Fermi gas (UFG) have recently been measured to unprecede...
Wave-vector resolved radio frequency spectroscopy data for an ultracold trapped Fermi gas are report...
We introduce a method that combines the power of both the lattice Green' function Monte Carlo (LGFMC...
Abstract. In recent years Quantum Monte Carlo techniques provided to be a valuable tool to study str...
Ultracold gases provide an ideal platform for quantum simulations of many-body systems. Here we are ...
We present a systematic comparison of the most recent thermodynamic measurements of a trapped Fermi ...
In this Thesis we will theoretically address some issues concerning the Physics of ultracold Fermi g...
We investigate the doped two-dimensional Hubbard model at finite temperature using controlled diagra...
We present an ab initio determination of spin responses of the unitary Fermi gas, based on finite te...
Ultracold atomic Fermi gases present an opportunity to study strongly interacting fermionic systems...
The physics of the pseudogap state is intimately linked with the pairing mechanism that gives rise t...
In a Fermi superfluid increasing population imbalance leads initially to reduction of the ...
We discuss the pseudogap regime in the unitary Fermi gas (UFG), with a particular emphasis on the au...
Strongly correlated Fermi systems with pairing interactions become superfluid below a critical tempe...
Abstract In this chapter, we describe three related studies of the universal physics of two-componen...
The thermodynamic properties of the unitary Fermi gas (UFG) have recently been measured to unprecede...
Wave-vector resolved radio frequency spectroscopy data for an ultracold trapped Fermi gas are report...
We introduce a method that combines the power of both the lattice Green' function Monte Carlo (LGFMC...
Abstract. In recent years Quantum Monte Carlo techniques provided to be a valuable tool to study str...
Ultracold gases provide an ideal platform for quantum simulations of many-body systems. Here we are ...
We present a systematic comparison of the most recent thermodynamic measurements of a trapped Fermi ...
In this Thesis we will theoretically address some issues concerning the Physics of ultracold Fermi g...
We investigate the doped two-dimensional Hubbard model at finite temperature using controlled diagra...
We present an ab initio determination of spin responses of the unitary Fermi gas, based on finite te...
Ultracold atomic Fermi gases present an opportunity to study strongly interacting fermionic systems...
The physics of the pseudogap state is intimately linked with the pairing mechanism that gives rise t...
In a Fermi superfluid increasing population imbalance leads initially to reduction of the ...