Spectroscopy of 15O by use of the 13C(3He, n)15O reaction
Identifieur interne : 002E51 ( Main/Merge ); précédent : 002E50; suivant : 002E52Spectroscopy of 15O by use of the 13C(3He, n)15O reaction
Auteurs : P. D. Georgopulos [États-Unis] ; W. A. Lochstet ; E. BleulerSource :
- Nuclear Physics, Section A [ 0375-9474 ] ; 1972.
English descriptors
- Teeft :
- Absolute values, Angular distribution, Angular distributions, Angular momentum transfers, Boyarkina, Coefficient, Computer code dwuck, Dominant configurations, Dwba, Dwba analysis, Dwba calculations, Excitation, Excitation energy, Exit channels, Experimental results, Flight paths, Fractional parentage, French wave functions, General agreement, Goldhammer, Ground state, Ground state transition, Halbert, Interference terms, Kurath, Level density, Level width, Neutron, Neutron physics, Nucl, Nuclear reactions, Other states, Pennsylvania state university, Phys, Potential sets, Present analysis, Present study, Private communication, Reaction mechanism, Residual nucleus, Spectroscopic factors, Spectroscopic strengths, Strength factor, Strength factors, Subsequent analyses, Target nucleus, Theoretical calculations, Transfer reactions, Wave function, Wave functions.
Abstract
Abstract: Coefficients of fractional parentage (2-c.f.p.) were extracted from theoretical calculations for the 13C(3He, n)15O reaction. These 2-c.f.p. were used in DWBA calculations to obtain the direct reaction part of the cross section. Angular distributions were taken for the 13C(3He, n) 15O reaction at 6 MeV, and fitted with an incoherent sum of direct and compound parts. One-particle-two-hole strengths were suggested for the first six positive-parity states. The positive-parity 10.28 MeV state is suggested to have a spin of 5 2 or greater.
Url:
DOI: 10.1016/0375-9474(72)90360-0
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<profileDesc><textClass><keywords scheme="Teeft" xml:lang="en"><term>Absolute values</term>
<term>Angular distribution</term>
<term>Angular distributions</term>
<term>Angular momentum transfers</term>
<term>Boyarkina</term>
<term>Coefficient</term>
<term>Computer code dwuck</term>
<term>Dominant configurations</term>
<term>Dwba</term>
<term>Dwba analysis</term>
<term>Dwba calculations</term>
<term>Excitation</term>
<term>Excitation energy</term>
<term>Exit channels</term>
<term>Experimental results</term>
<term>Flight paths</term>
<term>Fractional parentage</term>
<term>French wave functions</term>
<term>General agreement</term>
<term>Goldhammer</term>
<term>Ground state</term>
<term>Ground state transition</term>
<term>Halbert</term>
<term>Interference terms</term>
<term>Kurath</term>
<term>Level density</term>
<term>Level width</term>
<term>Neutron</term>
<term>Neutron physics</term>
<term>Nucl</term>
<term>Nuclear reactions</term>
<term>Other states</term>
<term>Pennsylvania state university</term>
<term>Phys</term>
<term>Potential sets</term>
<term>Present analysis</term>
<term>Present study</term>
<term>Private communication</term>
<term>Reaction mechanism</term>
<term>Residual nucleus</term>
<term>Spectroscopic factors</term>
<term>Spectroscopic strengths</term>
<term>Strength factor</term>
<term>Strength factors</term>
<term>Subsequent analyses</term>
<term>Target nucleus</term>
<term>Theoretical calculations</term>
<term>Transfer reactions</term>
<term>Wave function</term>
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<front><div type="abstract" xml:lang="en">Abstract: Coefficients of fractional parentage (2-c.f.p.) were extracted from theoretical calculations for the 13C(3He, n)15O reaction. These 2-c.f.p. were used in DWBA calculations to obtain the direct reaction part of the cross section. Angular distributions were taken for the 13C(3He, n) 15O reaction at 6 MeV, and fitted with an incoherent sum of direct and compound parts. One-particle-two-hole strengths were suggested for the first six positive-parity states. The positive-parity 10.28 MeV state is suggested to have a spin of 5 2 or greater.</div>
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