TFPT v2.8 Prediction Sheet: Neutrino Oscillation Parameters (PMNS Angles and δCP = 240°)

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Main Authors: Hamann, Stefan, Rizzzo, Alessandro
Format: Recurso digital
Published: Zenodo 2026
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_version_ 1866901392318267392
author Hamann, Stefan
Rizzzo, Alessandro
author_facet Hamann, Stefan
Rizzzo, Alessandro
contents <p>This technical note lists the TFPT v2.8 prediction for neutrino oscillation parameters in the PDG convention, including the Dirac CP phase δCP = 240 degrees (equivalently minus 120 degrees modulo 360 degrees) and a normal ordering mass spectrum. It provides the full parameter point for sin squared theta13, sin squared theta12, sin squared theta23 including the predicted octant preference, and the relevant mass splittings, together with a comparison to contemporary global fit central values.</p> <p>The note is intended for direct confrontation with experimental posteriors, and it explicitly requests reporting of δCP and the theta23 octant together with the full covariance so the TFPT parameter point can be tested as a correlated hypothesis, not as isolated one dimensional pulls.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18535018
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle TFPT v2.8 Prediction Sheet: Neutrino Oscillation Parameters (PMNS Angles and δCP = 240°)
Hamann, Stefan
Rizzzo, Alessandro
<p>This technical note lists the TFPT v2.8 prediction for neutrino oscillation parameters in the PDG convention, including the Dirac CP phase δCP = 240 degrees (equivalently minus 120 degrees modulo 360 degrees) and a normal ordering mass spectrum. It provides the full parameter point for sin squared theta13, sin squared theta12, sin squared theta23 including the predicted octant preference, and the relevant mass splittings, together with a comparison to contemporary global fit central values.</p> <p>The note is intended for direct confrontation with experimental posteriors, and it explicitly requests reporting of δCP and the theta23 octant together with the full covariance so the TFPT parameter point can be tested as a correlated hypothesis, not as isolated one dimensional pulls.</p>
title TFPT v2.8 Prediction Sheet: Neutrino Oscillation Parameters (PMNS Angles and δCP = 240°)
url https://doi.org/10.5281/zenodo.18535018