arXiv · 1610.06954
Phonon-particle coupling effects in odd-even double mass differences of semi-magic nuclei
Abstract
A method is developed to consider the particle-phonon coupling (PC) effects in the calculation of the odd-even double mass differences (DMD) in semi-magic nuclei starting from the free $NN$-potential. The PC correction $\delta \Sigma^{\rm PC}$ to the mass operator $\Sigma$ is found in $g_L^2$-approximation, $g_L$ being the vertex of creating the $L$-phonon. The tadpole term of the operator $\delta \Sigma^{\rm PC}$ is taken into account. The method is based on a direct, without any use of the perturbation theory, solution of the Dyson equation with the mass operator $\Sigma(\epsilon){=}\Sigma_0{+}\delta \Sigma^{\rm PC}(\epsilon)$ for finding the single-particle energies and $Z$-factors. In its turn, they are used as an input for finding different PC corrections to the DMD values. Results for a chain of even semi-magic nuclei $^{200-206}$Pb show that the inclusion of the PC corrections makes agreement with the experimental data significantly better.
Explore related subjects
Keep this discovery
E. E. Saperstein, M. Baldo, S. S. Pankratov, S. V. Tolokonnikov. 2016-10-21. Phonon-particle coupling effects in odd-even double mass differences of semi-magic nuclei. https://doi.org/10.1134/s0021364016230144
Cite the original work for its findings. Save a collection to share your selection of sources.