| _version_ | 1866901944217370624 |
|---|---|
| author | Herbert, Roy |
| author_facet | Herbert, Roy |
| contents | <p>This preprint presents a data-driven observational test program for the Chronoflux temporal-flow framework, in which gravity, inertia, and cosmological dynamics arise from gradients of a conserved scalar field χ.</p> <p>A minimal parameter set (ε, R₀, τₛ) describing a dispersive near-horizon interface is shown to produce correlated predictions across gravitational-wave ringdowns, horizon-scale imaging, neutrino transients, atomic clock experiments, and cosmological surveys.</p> <p>Using shared priors constrained by existing null results, stacked analyses, imaging limits, and detector forecasts are shown to be mutually consistent within a single parameter region.</p> <p>Each observational arena is associated with pre-registered decision criteria so that confirmation or refutation of the framework is determined mechanically rather than rhetorically.</p> <p>The work is released as part of the Chronoflux Research Initiative and is intended as a falsifiable observational program rather than a purely theoretical proposal.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19153249 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Chronoflux: An Observational Test Program for a Temporal-Flow Foundation Herbert, Roy Chronoflux temporal flow gravitational waves event horizon physics EHT Hyper-Kamiokande atomic clocks DESI pulsar timing arrays fundamental physics Physical cosmology temporal hydrodynamics Chronoflux Research Initiative <p>This preprint presents a data-driven observational test program for the Chronoflux temporal-flow framework, in which gravity, inertia, and cosmological dynamics arise from gradients of a conserved scalar field χ.</p> <p>A minimal parameter set (ε, R₀, τₛ) describing a dispersive near-horizon interface is shown to produce correlated predictions across gravitational-wave ringdowns, horizon-scale imaging, neutrino transients, atomic clock experiments, and cosmological surveys.</p> <p>Using shared priors constrained by existing null results, stacked analyses, imaging limits, and detector forecasts are shown to be mutually consistent within a single parameter region.</p> <p>Each observational arena is associated with pre-registered decision criteria so that confirmation or refutation of the framework is determined mechanically rather than rhetorically.</p> <p>The work is released as part of the Chronoflux Research Initiative and is intended as a falsifiable observational program rather than a purely theoretical proposal.</p> |
| title | Chronoflux: An Observational Test Program for a Temporal-Flow Foundation |
| topic | Chronoflux temporal flow gravitational waves event horizon physics EHT Hyper-Kamiokande atomic clocks DESI pulsar timing arrays fundamental physics Physical cosmology temporal hydrodynamics Chronoflux Research Initiative |
| url | https://doi.org/10.5281/zenodo.19153249 |