Dispersive optical model description of the CaFe experiment
R. A. Ramon, M. C. Atkinson, W. H. Dickhoff
Abstract
High-momentum ratios measured in the CaFe experiment using high-energy electron scattering off the CaFe nuclei (i.e.~ 40Ca, 48Ca, 54Fe) have revealed a surprising correlation between the nuclear shell structure and the high-momentum components generated by short-range and tensor correlations (SRC). The non-local dispersive optical model (DOM) successfully describes the experimentally measured high-momentum ratios while simultaneously describing the nuclear bound-state properties and scattering observables for these CaFe nuclei. The experimentally measured average high-momentum ratio of 48Ca/40Ca and 54Fe/48Ca are 1.10~~0.02 and 1.49~~0.03, respectively. The corresponding DOM results are 1.05~~0.05 and 1.52~~0.08, which is the first successful description of these experimental results. The present DOM analysis of CaFe nuclei relied on an extended version of the DOM incorporating a shrinkable geometry to provide a more localized and stronger volume absorption at higher missing energies to correctly represent the SRC physics. The success of the DOM can be attributed to its simultaneous treatment of structure and reaction data, the latter requiring a depletion of the mean-field accompanied by the proper admixture of high-momentum components in the respective ground states.
Create a lesson
Related papers
Trace-anomaly decomposition and universal dark matter scaling in compact stars
Adamu Issifu, Constança Providência, Tobias Frederico
Thermodynamic signatures do not uniquely identify deconfinement in neutron stars
Yong-Liang Ma, Jia-Ying Xiong
Properties of rapidly rotating hot neutron stars within Brueckner theory
Hong-Ming Liu, Bo-Xiu Zhou, Zeng-Hua Li et al.
Hadronization into Nuclei: Does Size Matter?
Anton Andronic, Peter Braun-Munzinger, Hjalmar Brunßen et al.
Microscopic Insights into the Quarkyonic Hadron--Quark Crossover: Lessons from Ultracold Fermi Gases
Hiroyuki Tajima
A Two-Component Exciton Model for β-Delayed Neutron Emission
Nico Braukman, Toshihiko Kawano, Robert Grzywacz et al.