Non-Inertial Coulomb-Resonator Spectra

We model the electron--proton system as a Coulomb resonator with stationary resonant modes. Its non-inertial response and intrinsic Coulomb times give a small parameter ordering the jerk--snap truncation. The central physical picture is that each stationary Coulomb-resonator mode can resonantly re-radiate energy supplied by a broadband non-inertial background while remaining in that mode. The leading jerk contribution defines a ground-mode energy scale of 9.10 meV and parameter-free characteristic wavelength shifts for hydrogen-like reference intervals. Their interpretation as stationary spectral corrections requires an explicit non-inertial power balance.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-15
DOI
https://doi.org/10.5281/zenodo.22761526
Primary Topic
Atomic and Molecular Physics
Type
preprint
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preprint

Non-Inertial Coulomb-Resonator Spectra

T. F. Kamalov
Zenodo (CERN European Organization for Nuclear Research)
Atomic and Molecular Physics
preprint

Non-Inertial Coulomb-Resonator Spectra

T. F. Kamalov
preprint en

Abstract

We model the electron--proton system as a Coulomb resonator with stationary resonant modes. Its non-inertial response and intrinsic Coulomb times give a small parameter ordering the jerk--snap truncation. The central physical picture is that each stationary Coulomb-resonator mode can resonantly re-radiate energy supplied by a broadband non-inertial background while remaining in that mode. The leading jerk contribution defines a ground-mode energy scale of 9.10 meV and parameter-free characteristic wavelength shifts for hydrogen-like reference intervals. Their interpretation as stationary spectral corrections requires an explicit non-inertial power balance.

Zenodo (CERN European Organization for Nuclear Research)
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Atomic and Molecular Physics
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