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THEORETICAL CALCULATION OF THE BINDING ENERGY OF O$sup 1$$sup 6$

Journal Article · · Physical Review (U.S.) Superseded in part by Phys. Rev. A, Phys. Rev. B: Solid State, Phys. Rev. C, and Phys. Rev. D
The second-order perturbation procedure of Bolsterli and Feenberg is applied to the ground state of O/sup 16/. The two-body interaction operator employed has a Serber exchange charater with repulsive core and tensor component, determined to give a reasonable fit to the propenties of H/sup 2/, H/sup 3/, He/ sup 3/, and He/sup 4/ to the accuracy of the perturbation procedure. The resulting eigenstate for O/sup 16/ is found to have energy eigenvalue - 129.2 Mev and rms radius 2.33 x 10/sup -13/ cm. Coulomb forces are neglected. Components in the wave function different from the zero-order shell-model state are found to have a statistical weight of about 18%. (auth)
Research Organization:
Univ. of Nebraska, Lincoln
NSA Number:
NSA-14-006984
OSTI ID:
4178581
Journal Information:
Physical Review (U.S.) Superseded in part by Phys. Rev. A, Phys. Rev. B: Solid State, Phys. Rev. C, and Phys. Rev. D, Journal Name: Physical Review (U.S.) Superseded in part by Phys. Rev. A, Phys. Rev. B: Solid State, Phys. Rev. C, and Phys. Rev. D Vol. Vol: 116; ISSN PHRVA
Country of Publication:
Country unknown/Code not available
Language:
English

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