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Titlebook: Lepton Flavor Violation from Low Scale Seesaw Neutrinos with Masses Reachable at the LHC; Xabier Marcano Book 2018 Springer Nature Switzer

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书目名称Lepton Flavor Violation from Low Scale Seesaw Neutrinos with Masses Reachable at the LHC
编辑Xabier Marcano
视频video
概述Nominated as an outstanding Ph.D thesis by the Autonomous University of Madrid, Spain.Shows the importance of lepton flavor violating processes for testing the massive right-handed neutrino hypothesis
丛书名称Springer Theses
图书封面Titlebook: Lepton Flavor Violation from Low Scale Seesaw Neutrinos with Masses Reachable at the LHC;  Xabier Marcano Book 2018 Springer Nature Switzer
描述.Flavor physics is fundamental to test the Standard Model of particle physics and could be the key to discover new physics. This book explores lepton flavor violating implications in the low scale seesaw models, a well-motivated scenario for explaining the still open problem of neutrino mass generation. It studies the lepton flavor violating Higgs decays in depth, developing useful simple expressions for making fast estimations of this observable. It also introduces a new parametrization optimized for the study of lepton flavor violation in these models, showing that high rates could be obtained for Higgs and Z decays if these new heavy neutrinos have masses in the TeV range. Lastly, it goes on to explore the possibility of their production and decay at the Large Hadron Collider through events with two charged leptons of different flavor..
出版日期Book 2018
关键词Lepton Flavor Violation; Heavy Neutrino; Right-Handed Neutrino; Neutrino Masses; Seesaw Model; Inverse Se
版次1
doihttps://doi.org/10.1007/978-3-319-94604-7
isbn_softcover978-3-030-06882-0
isbn_ebook978-3-319-94604-7Series ISSN 2190-5053 Series E-ISSN 2190-5061
issn_series 2190-5053
copyrightSpringer Nature Switzerland AG 2018
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Xabier Marcano feasibility assessment of a mature Indian oil field for CO2.This book addresses the feasibility of CO.2.-EOR and sequestration in a mature Indian oil field, pursuing for the first time a cross-disciplinary approach that combines the results from reservoir modeling and flow simulation, rock physics
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