Electron scattering off the ground-state band and the. gamma. band in sup 150 Nd
Journal Article
·
· Physical Review, C (Nuclear Physics); (USA)
- Faculteit Natuurkunde en Sterrenkunde, Vrije Universiteit, de Boelelaan 1081, 1081HV Amsterdam, The Netherlands (NL) Service de Physique et Techniques Nucleaires, Commissariat a l'Energie Atomique, Bruyeres-le-Chatel, Boite Postale 12, F-91680 Bruyeres-le-Chatel, France Nationaal Instituut voor Kernfysica en Hoge-Energiefysica, sectie K (NIKHEF-K), P.O. Box 4395, 1009AJ Amsterdam, The Netherlands Department of Physics, University of Notre Dame, Notre Dame, Indiana 46556
Inelastic electron scattering to levels of the ground-state band and the {gamma} band in {sup 150}Nd was studied in a momentum transfer range of 0.5 to 2.8 fm{sup {minus}1}. The extracted transition charge densities were compared to microscopic Hartree-Fock-Boguliubov calculations. The overall agreement between the data and the calculations is good, indicating that the dynamic properties of the rotational collective degrees of freedom in statically deformed nuclei can be well described in this microscopic model.
- OSTI ID:
- 5636342
- Journal Information:
- Physical Review, C (Nuclear Physics); (USA), Vol. 43:5; ISSN 0556-2813
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ELECTRON REACTIONS
INELASTIC SCATTERING
NEODYMIUM 150 TARGET
BOGOLYUBOV METHOD
CHARGE DENSITY
DEFORMED NUCLEI
HARTREE-FOCK METHOD
LINEAR MOMENTUM TRANSFER
ROTATIONAL STATES
CHARGED-PARTICLE REACTIONS
ENERGY LEVELS
EXCITED STATES
LEPTON REACTIONS
MOMENTUM TRANSFER
NUCLEAR REACTIONS
NUCLEI
SCATTERING
TARGETS
651820* - Nuclear Properties & Reactions
A=150-189
Experimental
ELECTRON REACTIONS
INELASTIC SCATTERING
NEODYMIUM 150 TARGET
BOGOLYUBOV METHOD
CHARGE DENSITY
DEFORMED NUCLEI
HARTREE-FOCK METHOD
LINEAR MOMENTUM TRANSFER
ROTATIONAL STATES
CHARGED-PARTICLE REACTIONS
ENERGY LEVELS
EXCITED STATES
LEPTON REACTIONS
MOMENTUM TRANSFER
NUCLEAR REACTIONS
NUCLEI
SCATTERING
TARGETS
651820* - Nuclear Properties & Reactions
A=150-189
Experimental