A Blind Forward Prediction of the Reappearance of Supernova Requiem Using the Elbertse Time Field Model
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| Format: | Recurso digital |
| Sprache: | Englisch |
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2026
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| _version_ | 1866901519208546304 |
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| author | Elbertse, Bart |
| author_facet | Elbertse, Bart |
| contents | <p>Standard gravitational lensing models anchored within the mainstream cosmology framework routinely rely on the introduction of hypothetical, unobservable Dark Matter halos to reconcile calculated time-delays with empirical telescope observations. This paper presents a formal alternative utilizing the Elbertse Time Field Model (ETFM), which eliminates the necessity for hidden mass parameters by introducing a localized, material-driven cosmic time field. By mapping the actual granular distribution of visible baryonic mass concentration behind galaxy cluster MACS J0138, we establish that light rays traversing the cluster core experience a significantly different metrical resistance than predicted by smooth, dark-matter-padded configurations. Consequently, we provide a completely blind, forward-looking calendar prediction for the re-emergence of Supernova Requiem: May 19, 2028. This stands in sharp contrast to the mainstream consensus models that projected an arrival window centered around March 2027, offering an unalterable empirical test for cosmic time field mechanics.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20270663 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | A Blind Forward Prediction of the Reappearance of Supernova Requiem Using the Elbertse Time Field Model Elbertse, Bart MACS J0138 Supernova Requiem Gravitational Lensing Time-Delay Cosmology Elbertse Time Field Model Baryon Energy Density <p>Standard gravitational lensing models anchored within the mainstream cosmology framework routinely rely on the introduction of hypothetical, unobservable Dark Matter halos to reconcile calculated time-delays with empirical telescope observations. This paper presents a formal alternative utilizing the Elbertse Time Field Model (ETFM), which eliminates the necessity for hidden mass parameters by introducing a localized, material-driven cosmic time field. By mapping the actual granular distribution of visible baryonic mass concentration behind galaxy cluster MACS J0138, we establish that light rays traversing the cluster core experience a significantly different metrical resistance than predicted by smooth, dark-matter-padded configurations. Consequently, we provide a completely blind, forward-looking calendar prediction for the re-emergence of Supernova Requiem: May 19, 2028. This stands in sharp contrast to the mainstream consensus models that projected an arrival window centered around March 2027, offering an unalterable empirical test for cosmic time field mechanics.</p> |
| title | A Blind Forward Prediction of the Reappearance of Supernova Requiem Using the Elbertse Time Field Model |
| topic | MACS J0138 Supernova Requiem Gravitational Lensing Time-Delay Cosmology Elbertse Time Field Model Baryon Energy Density |
| url | https://doi.org/10.5281/zenodo.20270663 |