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February 2, 20260 citationsOpen Access

The Proton Radius Puzzle as an Interface Effect Evidence for Reduced–Mass–Dependent Short–Range Physics

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JWJurgen Wollbold

Key Points

  • This research aims to resolve the proton radius puzzle by examining interactions influencing proton charge radius extraction.
  • Re-evaluation of proton charge radius extraction from atomic spectroscopy
  • Analysis of finite-size effects and their dependence on reduced-mass
  • Use of dimensional scaling arguments for experimental data interpretation
  • Discussion of transfer tests to deuterium, muonic deuterium, and helium-3
  • A single interface length effectively resolves discrepancies in proton radius measurements
  • No new parameters were introduced, maintaining standard quantum electrodynamics
  • Findings imply that the proton radius puzzle reflects deeper geometric descriptions of atomic physics

Abstract

This paper addresses the proton radius puzzle by re-examining how the proton charge radius is operationally extracted from atomic spectroscopy. Rather than treating the radius as a system-independent property of the proton, the analysis shows that finite-size effects necessarily probe a reduced-mass–dependent short-range interaction region. Using only experimentally measured differences and dimensional scaling arguments, the work demonstrates that a single interface length resolves the discrepancy between electronic and muonic hydrogen without introducing new parameters or modifying quantum electrodynamics. Transfer tests to deuterium, muonic deuterium, and helium-3 are discussed. The results suggest that the proton radius puzzle may serve as a sensitive probe of underlying interface or geometric descriptions of short-range atomic physics.

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Cite This Study

Jurgen Wollbold (2026) studied this question.

synapsesocial.com/papers/6980fbbec1c9540dea80d901https://doi.org/10.17605/osf.io/en329
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