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Neutron hole states of Mo93,95

P. K. Bindal, D. H. Youngblood, and R. L. Kozub*

  • Cyclotron Institute and Physics Department, Texas A&M University, College Station, Texas 77843

  • *Supported in part by the National Science Foundation and the Robert A. Welch Foundation.

Phys. Rev. C 15, 2006 – Published 1 June, 1977

DOI: https://doi.org/10.1103/PhysRevC.15.2006

Abstract

The (p,d) and (d,t) reactions on Mo94 and Mo96 have been used at bombarding energies of ∼40 MeV to populate neutron hole states of Mo93 and Mo95. Excitation energies and angular distributions were measured for levels up to ∼5 MeV in excitation. A distorted-wave Born approximation analysis was used to make l assignments and to obtain spectroscopic factors. Three distinct groups of weakly excited levels, one corresponding to l=4 and two corresponding to l=1, were observed above 2.3 MeV excitation in both nuclei. A quasiparticle-core coupling model is used to predict the properties of Mo93,95 nuclei and fair agreement with the experiments is obtained.

[NUCLEAR REACTIONS, NUCLEAR STRUCTURE Mo94,96(p,d), Mo94,96(d,t), E40 MeV, measured σ(θ), Mo93,95 levels, deduced l, C2Sn; calculated J, π, Sn, quasiparticle-core coupling model.]

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