Electromagnetic form factors for nucleons in short-range correlations
Wanli Xing, X. G. Wang, A. W. Thomas
Abstract
Open-access reader
Wanli Xing, X. G. Wang, A. W. Thomas
Abstract
Open-access reader
Recent experimental studies have led to the suggestion that short-range correlations may be a major contributor to the nuclear EMC effect. This hypothesis requires that the structure function for nucleons involved in short-range correlations should be heavily suppressed compared to that of a free nucleon. Based on calculations performed within an AdS/QCD motivated, light-front quark-diquark model, we find that this large suppression of the nucleon structure function leads to a strong suppression of the nucleon elastic form factors.
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Recent experimental studies have led to the suggestion that short-range correlations may be a major contributor to the nuclear EMC effect. This hypothesis requires that the structure function for nucleons involved in short-range correlations should be heavily suppressed compared to that of a free nucleon. Based on calculations performed within an AdS/QCD motivated, light-front quark-diquark model, we find that this large suppression of the nucleon structure function leads to a strong suppression of the nucleon elastic form factors.
Key concepts: Nucleon, Diquark, Physics, Particle physics, EMC effect, Structure function, Range (aeronautics), Quantum chromodynamics