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We provide a microscopic calculation of neutron-proton and proton-proton cross sections in symmetricnuclear matter at various densities,using the Brueckner-Hartree-Fock approximation scheme with the Argonne V_(14)potential including the contribution of microscopic three-body force.We investigate separately the effects of three-bodyforce on the effective mass and on the scattering amplitude.In the present calculation,the rearrangement contributionof three-body force is considered,which will reduce the neutron and proton effective mass,and depress the amplitudeof cross section.The effect of three body force is shown to be repulsive,especially in high densities and large momenta,which will suppress the cross section markedly.
We provide a microscopic calculation of neutron-proton and proton-proton cross sections in symmetric nuclear matter at various densities, using the Brueckner-Hartree-Fock approximation scheme with the Argonne V 14 potential including the contribution of microscopic three-body force. investigate separately the effects of three-bodyforce on the effective mass and on the scattering amplitude. In the present calculation, the rearrangement contribution of three-body force is considered, which will reduce the neutron and proton effective mass, and depress the amplitude of the cross section. The effect of three body force is shown to be repulsive, especially in high densities and large momenta, which will suppress the cross section markedly.