Browsing by Author "Suarez Navarro, Omar Giancarlo"
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Item Impact of one loop corrections on light neutrino masses in the low scale susy seesaw(Pontificia Universidad Católica del Perú, 2024-01-10) Suarez Navarro, Omar Giancarlo; Jones Perez, JoelThis thesis covers the study of one-loop quantum corrections to the light neutrino masses. In the first part, we examine the extension of the standard model with right-handed neutrinos, where the Seesaw type I is present, allowing accessible masses for experimental searches. However, considering the corrections to the light neutrinos masses requires the pairs of heavy neutrinos to appear as pseudo Dirac particles, implying a suppression of the LNV parameters. In the second part, the supersymmetric contributions are analyzed in order to relax the lepton number violation (LNV) restrictions and achieve a greater difference between the heavy neutrino masses, as well as large mixings. When analyzing the destructive interference between the supersymmetric (which we describe as reducible and irreducible) and non-supersymmetric contributions, we found parameter regions where cancellations occur, however they are very small. So, the addition of SUSY does not guarantee the effect called screening, and the cases that are favorable need some degree of fine-tuning. In all cases, the numerical results of the analytical one-loop expressions calculated in the νRSM and νRMSSM models are checked with SPheno.Item Majorana vs Pseudo-Dirac Neutrinos at the ILC(Pontificia Universidad Católica del Perú, 2018-06-21) Suarez Navarro, Omar Giancarlo; Jones Pérez, JoelModelos Seesaw de masas de neutrinos a baja escala con una simetría aproximada de número leptónico pueden ser probados en colisionadores. En el modelo mínimo Seesaw Tipo I, implica la existencia de dos fermiones de Majorana pesados altamente degenerados que forman un par Pseudo-Dirac. Una pregunta muy importante es, en qué medida los futuros colisionadores tendrán sensibilidad al splitting entre los componentes de Majorana de este lepton pesado neutro, que señala la ruptura de número leptónico. Consideramos la producción de estos leptones pesados en la ILC, donde sus displaced decays proporcionan una señal de oro: una asimetría forward-backward, que depende crucialmente del splitting de la masa entre los dos componentes de Majorana. Mostramos que este observable puede limitar el splitting de la masa a valores mucho m´as bajos que los límites actuales, que provienen del neutrinoless double beta decay y las loop corrections.