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Beyond The Standard Model Explanations To Flavor Observables : 맛깔 관측량에 대한 표준 모형 너머의 설명

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Authors

모도영

Advisor
김형도
Issue Date
2015-08
Publisher
서울대학교 대학원
Keywords
Higgs boson, supersymmetry, flavor physics, discrete symmetry, neutrino
Description
학위논문(박사)--서울대학교 대학원 :자연과학대학 물리·천문학부,2015. 8. 김형도.
Abstract
After 125 GeV Higgs boson discovery, minimal supersymmetric standard model with gauge mediation becomes dangerous. Gauge mediation is thought to be one of the simplest solutions for SUSY flavor problem, such a virtue of gauge mediation is now in danger. In this thesis, we consider right-handed Majorana neutrino as supersymmetry breaking messenger. We can get additional tri-linear
coupling AU at the messenger scale after integrating out the right-handed Majorana neutrino. Through additional AU term, we can realize maximal stop mixing scenario which is hardly possible in genuine gauge mediation mechanism. However, mediating SUSY breaking effects through Yukawa coupling reintroduces the SUSY flavor problem in the model unless neutrino Dirac Yukawa is proportional to identity matrix. Making neutrino Dirac Yukawa the identity matrix is not a bizzarre assumption, but it is easily achieved by importing discrete symmetry. Discrete symmetry is also useful to explain the tri-bi maximal form of the PMNS matrix. Tri-bi maximal form indicates the zero θ13 mixing of neutrinos, which is rejected by RENO and Daya Bay collaborations. To incorporate non-zero θ13, we introduce small deviation parameters in the Majorana mass matrix and neutrino Dirac Yukawa matrix. Deviation parameters in the neutrino Dirac Yukawa can produce sizeable charged lepton flavor violation, we examine how large deviation in the neutrino Dirac Yukawa matrix is allowed by present and forthcoming charged lepton flavor violation experiments.
Language
eng
URI
http://dcollection.snu.ac.kr:80/jsp/common/DcLoOrgPer.jsp?sItemId=000000067464
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