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March 21, 20265 citationsOpen Access

Solar system and laboratory tests of the spectral action scale

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DADavid Alfyorov

Key Points

  • The aim is to derive the modified Newtonian potential and examine the effects of spectral action in gravitational tests.
  • Derived modified Newtonian potential from spectral action.
  • Analyzed linearized field equations for parameters and effective masses.
  • Confronted predictions with seven gravitational experiments.
  • Identified parameter-free Yukawa corrections for spin-2 and spin-0.
  • Determined effective masses as m₂ = Λ√(60/13) and m₀ = Λ/√(6(ξ−1/6)²).
  • Eöt-Wash experiment set the strongest constraint: Λ > 2.565 × 10⁻³ eV.

Abstract

We derive the modified Newtonian potential and post-Newtonian parameters of the spectral action with full Standard Model content. The linearized field equations yield two parameter-free Yukawa corrections with amplitudes −4/3 (spin-2) and +1/3 (spin-0) and calculable effective masses m₂ = Λ√(60/13) and m₀ = Λ/√(6(ξ−1/6)²). We confront these predictions with seven gravitational experiments. The Eöt-Wash torsion-balance experiment provides the strongest constraint: Λ > 2.565 × 10⁻³ eV (95% CL), corresponding to 1/Λ < 77 μm. All solar-system tests are satisfied with exponential margin. Companion paper to "Nonlocal one-loop form factors of the spectral action with Standard Model content" (doi:10.5281/zenodo.19039242).

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David Alfyorov (2026) studied this question.

synapsesocial.com/papers/69be38126e48c4981c6782edhttps://doi.org/10.5281/zenodo.19098100
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