International audienceWe present some recent developments on the nuclear many-body problem, such as the treatment of high-order correlations and finite temperature in the description of in-medium two-nucleon propagators. In this work we discuss two-time propagators of the particle-hole type, which describe the response of finite nuclei to external probes without nucleon transfer. The general theory is formulated in terms of the equation of motion method for these propagators with the only input from the bare nucleon-nucleon interaction. The numerical implementation was performed on the basis of the effective mason-nucleon Lagrangian in order to study the energy-dependent kernels of different complexity. The finite-temperature extension of t...
The question of nuclear response functions in a homogeneous medium is examined. A general method for...
PTHResponse functions in nuclear matter at finite temperature are considered beyond the usual Hartre...
The dipole response function of nuclear matter at zero and finite temperatures is investigated by em...
We present some recent developments on the nuclear many-body problem, such as the treatment of high-...
A thermal extension of the relativistic nuclear field theory is formulated for the nuclear response....
International audienceThe equation of motion for the two-fermion two-time correlation function in th...
International audienceNonperturbative aspects of the quantum many-body problem are revisited, discus...
22 Latex pages including 9 figures. Phys. Rev. C (in press)The nuclear collective response at finite...
The nuclear esponse function of 4°Ca is studied at finite temperature using self-consistent RPA. We ...
The multipole response of nuclei at temperatures T = 0-2 MeV is studied using a self-consistent fini...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceThis review focuses on the calculation of infinite nuclear matter response fun...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceSelf-consistent theory frameworks have been introduced for description of exci...
The question of nuclear response functions in a homogeneous medium is examined. A general method for...
PTHResponse functions in nuclear matter at finite temperature are considered beyond the usual Hartre...
The dipole response function of nuclear matter at zero and finite temperatures is investigated by em...
We present some recent developments on the nuclear many-body problem, such as the treatment of high-...
A thermal extension of the relativistic nuclear field theory is formulated for the nuclear response....
International audienceThe equation of motion for the two-fermion two-time correlation function in th...
International audienceNonperturbative aspects of the quantum many-body problem are revisited, discus...
22 Latex pages including 9 figures. Phys. Rev. C (in press)The nuclear collective response at finite...
The nuclear esponse function of 4°Ca is studied at finite temperature using self-consistent RPA. We ...
The multipole response of nuclei at temperatures T = 0-2 MeV is studied using a self-consistent fini...
International audienceA consistent microscopic theory for the response of strongly-coupled superflui...
International audienceThis review focuses on the calculation of infinite nuclear matter response fun...
International audienceThe two-fermion two-time correlation function in the pairing channel is discus...
International audienceSelf-consistent theory frameworks have been introduced for description of exci...
The question of nuclear response functions in a homogeneous medium is examined. A general method for...
PTHResponse functions in nuclear matter at finite temperature are considered beyond the usual Hartre...
The dipole response function of nuclear matter at zero and finite temperatures is investigated by em...