Prediction of Undiscovered Sub GeV to Multi GeV Particles from Chronos Time Curvature Scaling

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Main Author: Hall, Matthew
Format: Recurso digital
Language:English
Published: Zenodo 2025
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_version_ 1866901660897378304
author Hall, Matthew
author_facet Hall, Matthew
contents <p>This paper leverages the Chronos time-curvature scaling framework to forecast a series of undiscovered stable and metastable particle states in the sub-GeV to multi-GeV range. By applying the recursive mass scaling relation with empirically derived curvature dynamics, we identify several high-priority mass targets: ~76 MeV, 385 MeV, 1.23 GeV, 22.63 GeV, and others near known but unexplained energy gaps. These predictions fill in curvature-stable “mass deserts” between known particles like pions, kaons, and tau leptons. The predicted particles exhibit shallow curvature gradients, suggesting long-lived or weakly interacting behavior—ideal for dark sector investigations. This work presents immediate experimental targets for SHiP, LHCb, NA64, Belle II, and related efforts, offering a falsifiable pathway toward validating the Chronos framework.</p>
format Recurso digital
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institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Prediction of Undiscovered Sub GeV to Multi GeV Particles from Chronos Time Curvature Scaling
Hall, Matthew
Chronos Theory
Time Curvature
Sub-GeV Particles
Multi-GeV Mass Gaps
Stable Resonance
Dark Matter Candidates
Beam Dump Experiments
Mass Scaling Law
Temporal Geometry
LHCb
Belle II
SHiP
NA64
Tau Window
Recursive Curvature Locking
<p>This paper leverages the Chronos time-curvature scaling framework to forecast a series of undiscovered stable and metastable particle states in the sub-GeV to multi-GeV range. By applying the recursive mass scaling relation with empirically derived curvature dynamics, we identify several high-priority mass targets: ~76 MeV, 385 MeV, 1.23 GeV, 22.63 GeV, and others near known but unexplained energy gaps. These predictions fill in curvature-stable “mass deserts” between known particles like pions, kaons, and tau leptons. The predicted particles exhibit shallow curvature gradients, suggesting long-lived or weakly interacting behavior—ideal for dark sector investigations. This work presents immediate experimental targets for SHiP, LHCb, NA64, Belle II, and related efforts, offering a falsifiable pathway toward validating the Chronos framework.</p>
title Prediction of Undiscovered Sub GeV to Multi GeV Particles from Chronos Time Curvature Scaling
topic Chronos Theory
Time Curvature
Sub-GeV Particles
Multi-GeV Mass Gaps
Stable Resonance
Dark Matter Candidates
Beam Dump Experiments
Mass Scaling Law
Temporal Geometry
LHCb
Belle II
SHiP
NA64
Tau Window
Recursive Curvature Locking
url https://doi.org/10.5281/zenodo.16416832