A completely antisymmetrized Green's function approach to the inclusive quasielastic (e, e') scattering, including a realistic one-body density, is presented. The single-particle Green's function is expanded in terms of the eigenfunctions of the non-hermitian optical potential. This allows one to treat final state interactions consistently in the inclusive and in the exclusive reactions. Nuclear correlations are included in the one-body density. Numerical results for the response functions of 16O and 40Ca are presented and discussed
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
A relativistic model for quasielastic (QE) lepton-nucleus scattering is presented. The effects of fi...
A relativistic finite nucleus calculation using a Dirac optical potential is used to investigate the...
A completely antisymmetrized Green's function approach to the inclusive quasielastic (e, e') scatter...
A relativistic Green’s function approach to the inclusive quasielastic (e,e') scattering is presente...
A Green's function approach to the inclusive quasielastic ($e,e'$) scattering is presented. The comp...
he longitudinal and transverse response functions of the inclusive quasi-elastic (e, e') scattering ...
A relativistic Green's function approach to inclusive quasielastic charged-current neutrino–nucleus ...
A relativistic Green’s function approach to parity-violating quasielastic electron scattering is pre...
The role of final state interactions in inclusive electron scattering off nuclei is investigated in ...
Recent results obtained by applying the method of self-consistent Green's functions to nuclei and nu...
The longitudinal and transverse response functions for the inclusive quasielastic (e,e') reaction ar...
The Green's function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
Nonequilibrium Green’s function methods allow for an intrinsically consistent description of the evo...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
A relativistic model for quasielastic (QE) lepton-nucleus scattering is presented. The effects of fi...
A relativistic finite nucleus calculation using a Dirac optical potential is used to investigate the...
A completely antisymmetrized Green's function approach to the inclusive quasielastic (e, e') scatter...
A relativistic Green’s function approach to the inclusive quasielastic (e,e') scattering is presente...
A Green's function approach to the inclusive quasielastic ($e,e'$) scattering is presented. The comp...
he longitudinal and transverse response functions of the inclusive quasi-elastic (e, e') scattering ...
A relativistic Green's function approach to inclusive quasielastic charged-current neutrino–nucleus ...
A relativistic Green’s function approach to parity-violating quasielastic electron scattering is pre...
The role of final state interactions in inclusive electron scattering off nuclei is investigated in ...
Recent results obtained by applying the method of self-consistent Green's functions to nuclei and nu...
The longitudinal and transverse response functions for the inclusive quasielastic (e,e') reaction ar...
The Green's function method in the Quasiparticle Time Blocking Approximation is applied to nuclear e...
Nonequilibrium Green’s function methods allow for an intrinsically consistent description of the evo...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
A relativistic model for quasielastic (QE) lepton-nucleus scattering is presented. The effects of fi...
A relativistic finite nucleus calculation using a Dirac optical potential is used to investigate the...