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Autori principali: Gopalakrishna, Shrihari, Tibrewala, Rakesh
Natura: Preprint
Pubblicazione: 2023
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Accesso online:https://arxiv.org/abs/2311.14636
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author Gopalakrishna, Shrihari
Tibrewala, Rakesh
author_facet Gopalakrishna, Shrihari
Tibrewala, Rakesh
contents We compute the baryon asymmetry in decay and scattering processes involving the electromagnetically charge-neutral fermion $χ$ that carries nonzero baryon number and interacts with quark-like fermions $U,D$ via a vector-vector dimension-six effective operator, in the theory we developed in our earlier work. Majorana masses for the $χ$ break baryon number and split the Dirac fermion $χ$ into a pair of Majorana fermions $X_n$ with indefinite baryon number. We identify loop amplitudes for $X_n$ decay and scattering processes that are sensitive to the baryon number violation. The phases in the Majorana mass and couplings, in conjunction with the phase from intermediate onshell states, lead to $C$ and $CP$ violation in these processes. For some representative parameter choices, we numerically compute the decay and scattering baryon asymmetries between the process and its conjugate process, and find that the asymmetry generated is very interesting for explaining the baryon asymmetry of the Universe.
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id arxiv_https___arxiv_org_abs_2311_14636
institution arXiv
publishDate 2023
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spellingShingle Baryon Asymmetry from the Decay and Scattering of a Majorana Fermion Pair Coupled to Quarks
Gopalakrishna, Shrihari
Tibrewala, Rakesh
High Energy Physics - Phenomenology
We compute the baryon asymmetry in decay and scattering processes involving the electromagnetically charge-neutral fermion $χ$ that carries nonzero baryon number and interacts with quark-like fermions $U,D$ via a vector-vector dimension-six effective operator, in the theory we developed in our earlier work. Majorana masses for the $χ$ break baryon number and split the Dirac fermion $χ$ into a pair of Majorana fermions $X_n$ with indefinite baryon number. We identify loop amplitudes for $X_n$ decay and scattering processes that are sensitive to the baryon number violation. The phases in the Majorana mass and couplings, in conjunction with the phase from intermediate onshell states, lead to $C$ and $CP$ violation in these processes. For some representative parameter choices, we numerically compute the decay and scattering baryon asymmetries between the process and its conjugate process, and find that the asymmetry generated is very interesting for explaining the baryon asymmetry of the Universe.
title Baryon Asymmetry from the Decay and Scattering of a Majorana Fermion Pair Coupled to Quarks
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2311.14636