Functional renormalisation group approach is applied to a imbalanced many-fermion system with a short-range attractive force. We introduce a composite boson field to describe pairing effects, and assume a simple ansatz for the effective action. A set of approximate flow equations for the effective coupling including boson and fermionic fluctuations is derived and solved. We identify the critical values of particle number density mismatch when the system undergoes a normal state. We determine the phase diagram both at unitarity and around. The obtained phase diagram is in a reasonable agreement with the experimental data
In the present thesis superfluid many-fermion systems are investigated in the framework of the Renor...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
We address the problem of two pairs of fermions living on an arbitrary number of single-particle lev...
AbstractFunctional renormalisation group approach is applied to a imbalanced many-fermion system wit...
Functional renormalisation group approach is applied to a imbalanced many-fermion system with a shor...
The application of the exact renormalisation group to symmetric as well as asymmetric many-fermion s...
AbstractThe application of the nonperturbative renormalisation group approach to a system with two f...
The application of the exact renormalisation group to a many-fermion system with a short-range attra...
The application of the nonperturbative renormalisation group approach to a system with two fermion s...
Abstract. We consider the applications of functional renormalisation group to few and many-body syst...
A fermionic functional renormalization group (FRG) is applied to describe the super-fluid phase tran...
We apply the flow equation method to the study of the fermion systems with pairing interactions whic...
This thesis comprises two parts centered around the functional renormalization-group frame-work: in ...
We consider the applications of functional renormalisation group to few and many...
We investigate a population-imbalanced two-species fermionic system where the resonantly paired ferm...
In the present thesis superfluid many-fermion systems are investigated in the framework of the Renor...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
We address the problem of two pairs of fermions living on an arbitrary number of single-particle lev...
AbstractFunctional renormalisation group approach is applied to a imbalanced many-fermion system wit...
Functional renormalisation group approach is applied to a imbalanced many-fermion system with a shor...
The application of the exact renormalisation group to symmetric as well as asymmetric many-fermion s...
AbstractThe application of the nonperturbative renormalisation group approach to a system with two f...
The application of the exact renormalisation group to a many-fermion system with a short-range attra...
The application of the nonperturbative renormalisation group approach to a system with two fermion s...
Abstract. We consider the applications of functional renormalisation group to few and many-body syst...
A fermionic functional renormalization group (FRG) is applied to describe the super-fluid phase tran...
We apply the flow equation method to the study of the fermion systems with pairing interactions whic...
This thesis comprises two parts centered around the functional renormalization-group frame-work: in ...
We consider the applications of functional renormalisation group to few and many...
We investigate a population-imbalanced two-species fermionic system where the resonantly paired ferm...
In the present thesis superfluid many-fermion systems are investigated in the framework of the Renor...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
We address the problem of two pairs of fermions living on an arbitrary number of single-particle lev...