Fractional parentage coefficients in a seniority basis with good isospin have been computed for the j Γ 7 2 shell. For states for which the number of particles, n, equals the seniority quantum number, Β£, a recursion formula is used. For states with n x Β£, a generalized Wigner-Eckhart theorem for the
Calculation of Coefficients of Fractional Parentage for Large-Basis Harmonic-Oscillator Shell Model
β Scribed by A. Deveikis; R.K. Kalinauskas; B.R. Barrett
- Publisher
- Elsevier Science
- Year
- 2002
- Tongue
- English
- Weight
- 102 KB
- Volume
- 296
- Category
- Article
- ISSN
- 0003-4916
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β¦ Synopsis
A new procedure for large-scale calculations of the coefficients of fractional parentage (CFPs) for a single j-orbit with isospin is presented. The approach is based on a simple enumeration scheme for antisymmetric A-particle states and an efficient method for constructing the eigenvectors of an idempotent matrix. We investigate the characteristics of the introduced CFP basis and the application of this procedure to the ab initio harmonic-oscillator shell-model approach. The results of CFP calculations for the j = 1/2, . . . , 41/2 orbits are presented (the full sets of one-particle and two-particle CFPs up to the j = 9/2 orbit are obtained). The new computer code for calculation of the CFPs proves to be very quick, efficient, and numerically stable and produces results possessing only small numerical uncertainties.
π SIMILAR VOLUMES
The method of generating functions which was previously only employed for the spherical basis of harmonic-oscillator single-particle wave functions is here generalized to the deformed (=cylindrical = asymptotic) basis. One-center and two-center matrix elements which are important in fission or heavy