Proton mass/energy structure revisited: Insights from Patterson function analysis
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This study employs Patterson function analysis to reconstruct the spatial distribution of the proton’s mass and energy directly from gravitational form factors. By bypassing model assumptions, the method yields a density profile that is entirely positive and sharply localized. The reconstruction reveals a compact central peak with a half‑maximum radius of 0.0592 fm, establishing a stringent measure of the proton’s spatial extent. Comparative evaluations with nucleons, light nuclei, and mesons show that the proton’s mass/energy distribution occupies an intermediate position between neutron and proton charge profiles. These results demonstrate that Patterson imaging provides a transparent, reproducible framework for probing the internal structure of hadrons and light nuclei, offering new perspectives on the fundamental organization of charge and mass/energy in matter.



