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An Outline of Nuclear Reaction Formalism
Intermediate Resonances and Doorway States
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A. K. Kerman angular momentum anti-symmetrization approximation associated calculations complicated compound nucleus computed configurations continuum Coulomb Coulomb barrier coupling cross section decay defined described diagonal discussion distorted wave distribution doorway eigenfunctions eigenstates eigenvalues elastic scattering energy E0 Equation excitation energy exciton experimental fact Feshbach Figure fluctuations formalism formula going Green's function Hamiltonian incident particle inelastic intermediate resonance structure intermediate structure introduce isobaric analogs isospin isotopic spin Kerman lecture Lemmer look many-body matrix element McVoy neutron non-stripping nuclear reaction nucleon obtain optical model optical potential parameters parity particle-hole particle-vibration perturbation theory Phys Physics positive energy bound potential scattering problem projectile projection operator proton quantum numbers quasi-particle residual interaction result Rodberg S-matrix scattering amplitude second term shell shell-model simple excitation single-particle potential strength function tion transition two-particle vibration wave function width zero