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Texture One Zero Model Based on A4 Flavor Symmetry and its Implications to Neutrinoless Double Beta Decay

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dc.contributor.author Verma, Rishu
dc.contributor.author Kashav, Monal
dc.contributor.author Kashav, Monal
dc.contributor.author Sharma, Gazal
dc.contributor.author Verma, Surender
dc.contributor.author . Chauhan, B. C
dc.date.accessioned 2022-01-11T10:40:02Z
dc.date.available 2022-01-11T10:40:02Z
dc.date.issued 2021-08-31
dc.identifier.issn 2321-8649
dc.identifier.issn 2321-9289
dc.identifier.uri http://dspace.chitkarauniversity.edu.in/xmlui/handle/123456789/149
dc.description.abstract Neutrinos are perhaps the most elusive particles in our Universe. Neutrino physics could be counted as a benchmark for various new theories in elementary particle physics and also for the better understanding of the evolution of the Universe. To complete the neutrino picture, the missing information whether it is about their mass or their nature that the neutrinos are Majorana particles could be provided by the observation of a process called neutrinoless double beta (0νββ) decay. Neutrinoless double beta decay is a hypothesised nuclear process in which two neutrons simultaneously decay into protons with no neutrino emission. In this paper we proposed a neutrino mass model based on A4 symmetry group and studied its implications to 0νββ decay. We obtained a lower limit on |Mee| for inverted hierarchy and which can be probed in 0νββ experiments like SuperNEMO and KamLAND-Zen. en_US
dc.language.iso en en_US
dc.publisher Chitkara University Publications en_US
dc.relation.ispartofseries ;CHAENG/2013/51628
dc.subject Physics en_US
dc.subject Nuclear Physics en_US
dc.title Texture One Zero Model Based on A4 Flavor Symmetry and its Implications to Neutrinoless Double Beta Decay en_US
dc.type Article en_US


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