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Texture of Yukawa coupling matrices in general two-Higgs doublet model Yu-Feng Zhou J. Phys. G: Nucl. Part. Phys.30 (2004) 783-792 Presented by Ardy.

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Presentation on theme: "Texture of Yukawa coupling matrices in general two-Higgs doublet model Yu-Feng Zhou J. Phys. G: Nucl. Part. Phys.30 (2004) 783-792 Presented by Ardy."— Presentation transcript:

1 Texture of Yukawa coupling matrices in general two-Higgs doublet model Yu-Feng Zhou J. Phys. G: Nucl. Part. Phys.30 (2004) 783-792 Presented by Ardy

2 Introduction Unresolved problems within the SM: the origin of the fermion masses, mixing angles and CP violation, etc. Widely believed that the SM cannot be a fundamental theory of the basic interaction. Two-Higgs doublet model (2HDM) is the simplest extension of the SM.

3 The general 2HDM The Lagrangian for the Yukawa interaction is given by The two Higgs after spontaneous symmetry breaking have the following form:

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6 To forbid the tree level FCNC in 2HDM, the ad hoc discrete symmetries are often imposed on the Lagrangian which defines two types of 2HDM without tree level FCNCs, referred to as models I and II of 2HDM. However, since the most strict bound of tree level FCNCs only comes from the light quark sector, there is a possibility that the tree level FCNC do occur, but are greatly suppressed.

7 Abandoning the discrete symmetry (as type I and II), one arrives at the general type of 2HDM with small FCNCs. The small off-diagonal Yukawa matrix elements can be attributed to an approximate flavor symmetry which is slightly broken down.

8 2HDM with parallel texture

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13 Parallel textures with zero texture

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20 Four texture-zero textures

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22 Using the four texture-zero texture, Eq.(15) is rewritten as One finds that the corresponding Yukawa coupling matrix in the mass basis is given by

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28 The predicted branching ratios for the various decay modes are given by

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30 Summary We have discussed the texture of the Yukawa coupling matrices in the general 2HDM. In the framework of the parallel texture, suppression of the FCNC can be achieved. We have proposed a four texture-zero-based ansatz on the Yukawa coupling matrices which has several advantages over the six zero-texture- based ansatz proposed by Cheng and Sher. It is found that this new ansatz is more predictive in the lepton sector.

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