We present a formalism for the fermionic quasiparticle propagator in a superfluid fermionic system. Starting from a general many-body hamiltonian confined by the two-body instantaneous interaction, the equation of motion for the fermionic propagator is obtained in the Dyson form. Before making any approximation, the interaction kernel is found to be decomposed into the static and dynamical (time-dependent) contributions, while the latter translates to the energy-dependent and the former maps to the energy-independent terms in the energy domain. The three-fermion correlation function being the heart of the dynamical part of the kernel is factorized into the two-fermion and one-fermion ones. With the relaxed particle number constraint, the no...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
Starting from a general many-body fermionic Hamiltonian, we derive the equations of motion (EOM) for...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
A consistent microscopic theory for the response of strongly-coupled superfluid fermionic systems is...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
The shell evolution of neutron-rich nuclei with temperature is studied in a beyond-mean-field framew...
Momentum-dependent local ansatz (MLA) wavefunction approach to correlated electrons in solids has be...
This book provides a detailed exposition of field theoretical methods as applied to zero temperature...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
Starting from a general many-body fermionic Hamiltonian, we derive the equations of motion (EOM) for...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
A consistent microscopic theory for the response of strongly-coupled superfluid fermionic systems is...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
The shell evolution of neutron-rich nuclei with temperature is studied in a beyond-mean-field framew...
Momentum-dependent local ansatz (MLA) wavefunction approach to correlated electrons in solids has be...
This book provides a detailed exposition of field theoretical methods as applied to zero temperature...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
International audienceStarting from a general many-body fermionic Hamiltonian, we derive the equatio...
Starting from a general many-body fermionic Hamiltonian, we derive the equations of motion (EOM) for...