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研究生: 馮子耘
Feng, Tzu-Yun
論文名稱: 加入sterile neutrino 去修正A4 model
The Tri-Bimaximal Neutrino Mixing Matrix Could Be Modified By Adding Sterile Neutrinos
指導教授: 張敬民
Cheung, Kingman
口試委員: 張維甫
Chang, We-Fu
徐百嫻
Hsu, Pai-hsien Jennifer
學位類別: 碩士
Master
系所名稱: 理學院 - 物理學系
Department of Physics
論文出版年: 2015
畢業學年度: 103
語文別: 英文
論文頁數: 46
中文關鍵詞: 微中子混合矩陣
外文關鍵詞: neutrino, sterile neutrino
相關次數: 點閱:3下載:0
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  • 微中子震盪實驗已經被量測,從實驗結果得知微中子是有質量的。質量的特徵函數跟味的特徵函數有所不同,中間利用微中子混合矩陣連接。最有名的混合矩陣為TBM 混合矩陣,但是他預測 θ13為零。以現今的實驗數據告訴我們 θ13有95%不為零。所以我們利用加入無效應的微中子去改變 θ13,並且與實驗數據比較。


    The phenomenon of neutrino oscillation has been established. It implies
    that neutrinos having masses, so the mass eigenstate is different with the
    flavor eigenstate. They has mixing matrix described by a 3 × 3 unitary matrix,
    PMNS, like CKM matrix in quark sector. The most famous pattern is
    Tri-Bimaximal mixing matrix which predicts a vanishing θ13, but we have
    experimental evidence for a non vanishing value of the smallest θ13. TriBimaximal
    mixing matrix needs modifications. We study discrete flavour
    symmetries model(A4 symmetry), higher symmetry model and sterile neutrinos
    to explain small angle. First, suppose there has A4 symmetry or higher
    symmetry in lepton sector and neutrino sector and neutrinos have Majorana
    masses(or only have Dirac neutrinos). We will get Tri-Bimaximal mixing
    in A4 model. Second, Adding sterile neutrinos modify the mixing matrix,
    therefore we could get small angle(θ13). Then, transforming with new mixing
    matrix, we found ranges of neutrino masses,mixing angle and so on. We
    compare them to the experiment data

    1 Introduction 2 Neutrino 2.1 Neutrino oscillations 2.2 Neutrino mass matrix 3 A4 Symmetry 12 3.1 The Alternating Group A4 3.2 A flavor model with A4 3.2.1 Tri-Bimaximal Lepton Mixing 3.2.2 A4-Model 3.3 A4 × U(1) × Z2 × Z2 × Z2 symmetry model 4 The Tri-Bimaximal neutrino mixing matrix could be modi- fied by adding sterile neutrinos 4.1 Diagonalization of mass matrix 4.2 Model building with the sterile neutrinos 4.3 The mass matrix and mixing 4.4 Data comparing with experiment 5 Conclusion

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