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Doppler broadening in Mg 20 (βpγ) Ne 19 decay
B. E. Glassman
, D. Pérez-Loureiro
, C. Wrede
, J. Allen
, D. W. Bardayan
, M. B. Bennett
, K. A. Chipps
, M. Febbraro
,
M. Friedman
, C. Fry
, M. R. Hall
, O. Hall
, S. N. Liddick
, P. O'Malley
, W. J. Ong
, S. D. Pain
, S. B. Schwartz
, P. Shidling
, H. Sims
, L. J. Sun
P. Thompson, H. Zhang
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Research output
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Article
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peer-review
10
Scopus citations
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Keyphrases
Doppler Broadening
100%
Proton
66%
Proton Energy
66%
Light Curves
33%
Excited State Lifetime
33%
Monte Carlo Method
33%
X-ray Bursts
33%
Excitation Energy
33%
Branching Ratio
33%
Energy Center
33%
Plastic Scintillator
33%
Proton Transition
33%
Decay Branching Ratios
33%
Feeding Intensity
33%
Thermonuclear Reaction Rates
33%
Bottleneck Reactions
33%
High-purity Germanium (HPGe)
33%
Decay Scheme
33%
Chemistry
Ground State
100%
Excited State
100%
Monte Carlo Method
100%
Germanium
100%
Nucleon
100%
Physics
Proton Energy
100%
Light Curve
50%
Nucleon
50%
Center of Mass
50%
Thermonuclear Reaction
50%
Ground State
50%
Monte Carlo Method
50%
Detectors
50%
Engineering
Doppler Broadening
100%
Proton Energy
66%
Branching Ratio
66%
Constrains
33%
Excitation Energy
33%
Scintillator
33%
Thermonuclear Reaction
33%
Ground State
33%
Excited State
33%
Earth and Planetary Sciences
Proton Energy
100%
Center of Mass
50%
Emissions
50%
Nucleon
50%
Thermonuclear Reaction
50%
Ground State
50%
Material Science
Germanium
100%