Do Dark Gravity Theories Predict Opera Superluminal Neutrinos and LENR Phenomena?
Fr\'ed\'eric Henry-Couannier

TL;DR
This paper explores whether Dark Gravity theories with conjugate metrics can predict superluminal neutrinos and related phenomena, analyzing their implications and compatibility with experimental results like OPERA and SN1987A.
Contribution
It demonstrates that Dark Gravity theories with conjugate metrics can potentially explain superluminal neutrino velocities and their oscillations in dense media, providing a novel theoretical framework.
Findings
Dark Gravity theories can predict superluminal neutrino velocities.
Neutrino oscillations between conjugate metrics could explain experimental anomalies.
Field discontinuities in these theories have significant phenomenological implications.
Abstract
We investigate whether theories with two conjugate metrics g_{\mu \nu} and where is supposed to be a background non dynamical and flat Minkowkian metric or an auxiliary field, actually predicted the occurrence of apparently superluminal propagations (from our metric side point of view) such as the one recently reported by the Opera experiment. We find that indeed such theories could predict the order of magnitude of the superluminal velocity and even explain the apparent conflict with the SN1987 normal neutrino speeds provided the neutrinos are able to oscillate between the two conjugate metrics while propagating in a dense medium. We then explain the theoretical motivations and explore all possible phenomenological consequences of the field discontinuities naturally expected in…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Cosmology and Gravitation Theories · Dark Matter and Cosmic Phenomena
