Neutron energy spectra from nuclei excited by [mu symbol]-meson capture
University of California, Berkeley, 1963 - Science - 81 pages
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Results and Discussion
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15 Neutron kinetic assumed atomic atomic orbit average neutron emission beam capacitor capture rate circuit coincidence circuit compound nucleus Compton edge computer code counter telescope cross section curve cyclotron decay determined directly emitted electron energy distribution energy spectra escape probability evaporation theory experiment experimental Fermi Energy Fermi gas model gate inelastic neutron scattering inside the nucleus interaction JL meson kinetic energy MeV level density level-density parameter liquid scintillator listed in Table low-energy mean free path meson capture momenta multiple neutron emission neutron binding energy Neutron kinetic energy neutron multiplicity neutron spectrum Neutron-energy spectrum nuclear capture nuclear excitation energy nuclear matter nuclear temperature nuclear-temperature plot nucleon number of counts observed obtained orbit particle PHA channel number photomultiplier tube prompt neutrons proton spectrum pulse-shape discrimination residual nucleus scintillation counter scintillation pulse shell-model calculation shown in Fig subtraction target nuclei tion v-ray wave function