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Neutrino interaction with matter in a noninertial frame

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arxiv 1408.2735 v2 pith:O3JKZTP5 submitted 2014-08-12 hep-ph astro-ph.HEgr-qchep-th

classification hep-phastro-ph.HEgr-qchep-th
keywords matterneutrinoequationrotatingdiracframenoninertialoscillations
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We study the system of massive and mixed neutrinos interacting with background matter moving with an acceleration. We start with the derivation of the Dirac equation for a single neutrino in the noninertial frame where matter is at rest. A particular case of matter rotating with a constant angular velocity is considered. The Dirac equation is solved and the neutrino energy levels are found for ultrarelativistic particles propagating in rotating matter. Then we generalize our results to include several neutrino generations and consider mixing between them. Using the relativistic quantum mechanics approach we derive the effective Schr\"{o}dinger equation for the description of neutrino flavor oscillations in rotating matter. We obtain the resonance condition for neutrino oscillations and examine how it can be affected by the matter rotation. We also compare our results with the findings of other authors who studied analogous problem previously.

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  1. FCL-COD: Weakly Supervised Camouflaged Object Detection with Frequency-aware and Contrastive Learning

    cs.CV 2026-03 unverdicted novelty 5.0 of 10

    FCL-COD adapts SAM with frequency-aware LoRA and gradient-aware contrastive learning and claims to outperform both weakly and fully supervised camouflaged object detectors on three benchmarks.

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