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Constraints on the dipole photon strength for the odd uranium isotopes
n_TOF Collaboration, T. Rauscher
School of Physics, Engineering & Computer Science
Centre for Astrophysics Research (CAR)
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peer-review
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Keyphrases
Dipole
100%
Uranium Isotopes
100%
Photon Strength Function
100%
Nuclear Level Density
37%
Scissors Mode
25%
Pygmy Dipole Resonance
25%
Electric Dipole Resonance
25%
Experimental Spectra
25%
Low-energy Tail
12%
Nuclear Astrophysics
12%
Exhaustive Search
12%
Experiment Results
12%
Photon Interaction
12%
Photon Model
12%
Total Absorption Calorimeter
12%
Lorentz Model
12%
Wave Resonance
12%
Neutron Resonance
12%
Lorentzian
12%
Statistical Model
12%
Inconsistency
12%
Model Prediction
12%
Nuclear Technology
12%
Model Selection
12%
Double Resonance
12%
Energy Dependence
12%
Advanced nuclear
12%
Nuclear Level Density Models
12%
Neutron Capture Reaction
12%
Shear Wave
12%
Reaction Cross Section
12%
Actinides
12%
Physics
Uranium Isotope
100%
Calorimeter
100%
Nuclear Astrophysics
100%
Actinide
100%
Earth and Planetary Sciences
Electric Dipole
100%
Uranium Isotope
100%
Actinide
50%
Calorimeter
50%
Nuclear Astrophysics
50%
Engineering
Strength Function
100%
Cross Section
37%
Electric Dipole
25%
Energy Engineering
25%
Calorimeter
12%
Constant Temperature
12%
Model Combination
12%
Experimental Technique
12%
Statistical Model
12%