A comparison between shell-model configuration mixing calculations and the MCHF model in the ground state rotational spectra of $sup 20$Ne, $sup 22$Ne and $sup 24$Mg
Journal Article
·
· Nucl. Phys., A, v. 228, no. 3, pp. 524-532
OSTI ID:4244711
- Research Organization:
- Kernforschungsanlage Juelich G.m.b.H. (F.R. Germany). Inst. fuer Kernphysik); (Oak Ridge National Lab., Tenn. (USA)
- NSA Number:
- NSA-31-002071
- OSTI ID:
- 4244711
- Journal Information:
- Nucl. Phys., A, v. 228, no. 3, pp. 524-532, Other Information: Orig. Receipt Date: 30-JUN-75; Bib. Info. Source: NL (Netherlands (sent to DOE from))
- Country of Publication:
- Netherlands
- Language:
- English
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A SHELL MODEL DESCRIPTION OF ISOBARIC ANALOGUE STATES IN $sup 20$Ne AND $sup 24$Mg.
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OSTI ID:4244711
Related Subjects
N68432* -Physics (Nuclear
Theoretical)-Nuclear Properties & Reactions
20 <= A <= 38-Energy Levels & Transitions
*MAGNESIUM 24- ROTATIONAL STATES
*NEON 20- ROTATIONAL STATES
*NEON 22- ROTATIONAL STATES
CONFIGURATION MIXING
GROUND STATES
HAMILTONIANS
HARTREE-FOCK METHOD
MOMENT OF INERTIA
NUCLEAR ELECTRIC MOMENTS
QUADRUPOLE MOMENTS
SHELL MODELS
SLATER METHOD
WAVE FUNCTIONS
Theoretical)-Nuclear Properties & Reactions
20 <= A <= 38-Energy Levels & Transitions
*MAGNESIUM 24- ROTATIONAL STATES
*NEON 20- ROTATIONAL STATES
*NEON 22- ROTATIONAL STATES
CONFIGURATION MIXING
GROUND STATES
HAMILTONIANS
HARTREE-FOCK METHOD
MOMENT OF INERTIA
NUCLEAR ELECTRIC MOMENTS
QUADRUPOLE MOMENTS
SHELL MODELS
SLATER METHOD
WAVE FUNCTIONS