Sequential Time Theory, Volume 3: The Chronological Deception
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| Format: | Recurso digital |
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2026
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| _version_ | 1866901773702135808 |
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| author | KOJIMA, TERUHITO |
| author_facet | KOJIMA, TERUHITO |
| contents | <p>The standard cosmological model (Lambda-CDM) postulates the existence of Dark Energy to explain the accelerating expansion of the universe. While statistically robust, the model lacks a fundamental physical origin for this energy and faces the persistent "Hubble Tension."</p> <p>This paper applies Sequential Time Theory (STT) to cosmology, proposing a paradigm shift where the physical unit of time is not invariant but evolves due to the changing cosmic gravitational potential and quantum coherence scales. We construct a unified model integrating General Relativistic time dilation with a Quantum Damping term derived from STT Vol.2. This model was tested against the full Pantheon+ Unbinned Supernovae dataset (N=1590), utilizing the full covariance matrix including systematic errors.</p> <p>The results reveal that the STT model achieves a goodness-of-fit (chi-squared = 1402.71) that is statistically indistinguishable from the standard Lambda-CDM model (chi-squared = 1402.92) using SNe alone. Significantly, the derived quantum transition scale z_dec = 1.50 (+0.42 / -0.33) is consistent with the peak epoch of cosmic star formation. This suggests that "cosmic acceleration" could be reinterpreted as an illusion caused by the phase transition of time from a quantum-coherent regime to a gravity-dominated classical regime, potentially offering an alternative to the standard Dark Energy hypothesis.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18501872 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Sequential Time Theory, Volume 3: The Chronological Deception KOJIMA, TERUHITO Time Dark Energy Hubble Tension Quantum Decoherence Mach's Principle Pantheon+ <p>The standard cosmological model (Lambda-CDM) postulates the existence of Dark Energy to explain the accelerating expansion of the universe. While statistically robust, the model lacks a fundamental physical origin for this energy and faces the persistent "Hubble Tension."</p> <p>This paper applies Sequential Time Theory (STT) to cosmology, proposing a paradigm shift where the physical unit of time is not invariant but evolves due to the changing cosmic gravitational potential and quantum coherence scales. We construct a unified model integrating General Relativistic time dilation with a Quantum Damping term derived from STT Vol.2. This model was tested against the full Pantheon+ Unbinned Supernovae dataset (N=1590), utilizing the full covariance matrix including systematic errors.</p> <p>The results reveal that the STT model achieves a goodness-of-fit (chi-squared = 1402.71) that is statistically indistinguishable from the standard Lambda-CDM model (chi-squared = 1402.92) using SNe alone. Significantly, the derived quantum transition scale z_dec = 1.50 (+0.42 / -0.33) is consistent with the peak epoch of cosmic star formation. This suggests that "cosmic acceleration" could be reinterpreted as an illusion caused by the phase transition of time from a quantum-coherent regime to a gravity-dominated classical regime, potentially offering an alternative to the standard Dark Energy hypothesis.</p> |
| title | Sequential Time Theory, Volume 3: The Chronological Deception |
| topic | Time Dark Energy Hubble Tension Quantum Decoherence Mach's Principle Pantheon+ |
| url | https://doi.org/10.5281/zenodo.18501872 |