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Titlebook: Developing Nucleon Self-Energies to Generate the Ingredients for the Description of Nuclear Reaction; Mack C. Atkinson Book 2020 Springer

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Goethe als Prosaschriftsteller,tions of the (., .) reaction. This framework is applied to describe the knockout of a proton from the . and . orbitals in .Ca with fixed normalizations of 0.71 and 0.60, respectively. Data were obtained in parallel kinematics for three outgoing proton energies: 70, 100, and 135 MeV. Agreement with t
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Gabriele Busch-Salmen,Walter Salmending the corresponding energy of the ground state. The nuclear interior minimally contributes to the total binding energy due to the 4.. phase space factor. Thus, the volume contribution to the energy in the interior is not well constrained. The dispersive-optical-model energy densities are in reaso
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Götz von Berlichingen mit der eisernen Handng the real and imaginary part of the self-energy, scattering and structure data are used to constrain these self-energies. The ability to calculate both bound and scattering states simultaneously puts these self-energies in a unique position to consistently describe exclusive knockout reactions suc
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Theoretical Background,g theory while the scattering equation is discussed in the context of .-matrix theory and the Lagrange basis. A presentation of many-body formalism segways into a discussion of the dispersive optical model.
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Developing Nucleon Self-Energies to Generate the Ingredients for the Description of Nuclear Reaction
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2190-5053 interpretation of the saturation probabilities of infinite nuclear matter is proposed suggesting that the semi-empirical mass formula must be supplemented witha better extrapolation from nuclei to infinite matter.978-3-030-53116-4978-3-030-53114-0Series ISSN 2190-5053 Series E-ISSN 2190-5061
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