A shell-model calculation with reaction matrix elements

作者: Roch Mercier , Elizabeth Urey Baranger , R.J. McCarthy

DOI: 10.1016/0375-9474(69)90733-7

关键词:

摘要: Abstract A simple shell-model calculations of 18 F O with no core polarization is performed using reaction matrix elements the Hamada-Johnston potential. The are calculated harmonic oscillator intermediate states and inversion technique Kohler McCarthy. Results presented for a variety choices state spectrum, its found that T = 0 levels sensitive to this; 1 fairly insensitive. results compared experiment values Kuo. difference between usual Brueckner Q more accurate shown be significant. in which energies used matrices consistent resultant energy each level.

参考文章(14)
T.T.S. Kuo, G.E. Brown, Structure of finite nuclei and the free nucleon-nucleon interaction Nuclear Physics. ,vol. 85, pp. 40- 86 ,(1966) , 10.1016/0029-5582(66)90131-3
A. Kallio, B.D. Day, Accurate calculation of the reaction matrix in light nuclei Physics Letters B. ,vol. 25, pp. 72- 74 ,(1967) , 10.1016/0370-2693(67)90180-3
K. T. R. Davies, M. Baranger, R. M. Tarbutton, T. T. S. Kuo, Brueckner-Hartree-Fock Calculations of Spherical Nuclei in an Harmonic-Oscillator Basis Physical Review. ,vol. 177, pp. 1519- 1526 ,(1969) , 10.1103/PHYSREV.177.1519
D. Grillot, H. McManus, Reaction matrix elements for closed-shell nuclei using realistic forces Nuclear Physics A. ,vol. 113, pp. 161- 175 ,(1968) , 10.1016/0375-9474(68)90891-9
R.J. McCarthy, H.S. Köhler, Calculation of 16O binding energy Nuclear Physics. ,vol. 99, pp. 65- 82 ,(1967) , 10.1016/0375-9474(67)90209-6
R.J. McCarthy, Reaction matrix calculations in finite nuclei Nuclear Physics A. ,vol. 130, pp. 305- 321 ,(1969) , 10.1016/0375-9474(69)90732-5
T.T.S. Kuo, State dependence of shell-model reaction matrix elements Nuclear Physics. ,vol. 103, pp. 71- 96 ,(1967) , 10.1016/0375-9474(67)90790-7
T.T.S. Kuo, G.E. Brown, Reaction matrix elements for the 0f-1p shell nuclei Nuclear Physics. ,vol. 114, pp. 241- 279 ,(1968) , 10.1016/0375-9474(68)90353-9