arXiv:1211.6336·v3·Nuclear Theory
Kaonic atoms and in-medium K-N amplitudes II: interplay between theory and phenomenology
E. Friedman🇮🇱 · A. Gal🇮🇱
Abstract
A microscopic kaonic-atom optical potential is constructed, using the Ikeda-Hyodo-Weise NLO chiral subthreshold scattering amplitudes constrained by the kaonic hydrogen SIDDHARTA measurement, and incorporating Pauli correlations within the Waas-Rho-Weise generalization of the Ericson-Ericson multiple-scattering approach. Good fits to kaonic atom data over the entire periodic table require additionally sizable --motivated absorptive and dispersive phenomenological terms, in agreement with our former analysis based on a post-SIDDHARTA in-medium chirally-inspired NLO separable model by Cieplý and Smejkal. Such terms are included by introducing a phenomenological potential and coupling it self consistently to . Properties of resulting kaonic atom potentials are discussed with special attention paid to the role of -nuclear absorption and to the extraction of density-dependent amplitudes representing multi-nucleon processes.
Comments: 22 pages, 2 tables, 9 figures; v2--minor notational changes, particularly in Figs.7 and 8 and related text, and corrected typos in Table 2; v3--matching published version