Phonon-particle coupling effects in odd-even double mass differences of magic nuclei
arXiv:1511.08034 · doi:10.1134/S0021364016010124
Abstract
A method is developed to consider the particle-phonon coupling (PC) effects in the problem of finding odd-even double mass differences (DMD) of magic nuclei within the approach starting from the free -potential. Three PC effects are taken into account, the phonon induced interaction, the renormalization of the "ends" due to the -factors and the change of the single-particle energies. We use the perturbation theory in , where is the vertex of the -phonon creation. PC corrections to single-particle energies are found self-consistently with an approximate account for the so-called tadpole diagram. Results for double-magic Sn and Pb nuclei show that the PC corrections make agreement with the experimental data better.
LaTex, 6 pages, 4 figures, submitted to Jetp. Lett. arXiv admin note: substantial text overlap with arXiv:1511.06579
References in corpus (11)
- Covariant theory of particle-vibrational coupling and its effect on the single-particle spectrum
- Microscopic calculation and LDA of the spatial dependence of the pairing field with bare and induced interactions
- Non-empirical pairing energy functional in nuclear matter and finite nuclei
- Properties of single-particle states in a fully self-consistent particle-vibration coupling approach
- Non-empirical pairing functional
- Self-consistent description of single-particle levels of magic nuclei
- Spectroscopic properties of nuclear Skyrme energy density functionals
- Low-momentum NN interactions and all-order summation of ring diagrams of symmetric nuclear matter
- Microscopic evaluation of the pairing gap
- Semi-microscopic model of pairing in nuclei
- Spectroscopic factors of magic and semimagic nuclei within the self-consistent theory of finite Fermi systems
Cited by in corpus (4)
- Phonon-particle coupling effects in single-particle energies of semi-magic nuclei
- Phonon-particle coupling effects in odd-even double mass differences of semi-magic nuclei
- The first self-consistent calculation of quadrupole moments of odd semi-magic nuclei accounting for phonon induced corrections
- Self-consistent account for phonon induced corrections to quadrupole moments of odd nuclei. Pole and non-pole diagrams