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Single and Double Universal Seesaw Mechanisms with Universal Strength for Yukawa Couplings

机译:汤川联轴器具有通用强度的单,双通用跷跷板机构

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摘要

Single and double universal seesaw mechanisms and the hypothesis of universal strength for Yukawa couplings are applied to formulate a unified theory of fermion mass spectrum in a model based on an extended Pati-Salam symmetry. Five kinds of Higgs fields are postulated to mediate scalar interactions among electroweak doublets of light fermions and electroweak singlets of heavy exotic fermions with relative Yukawa coupling constants of exponential form. At the first-order seesaw approximation, quasi-democratic mass matrices with equal diagonal elements are derived for all charged fermion sectors and a diagonal mass matrix is obtained for the neutrino sector under an additional ansatz. Assuming the vacuum neutrino oscillation, the problems of solar and atmospheric neutrino anomalies are investigated.
机译:将单和双通用跷跷板机制以及Yukawa联轴器通用强度假设用于在扩展的Pati-Salam对称性模型中建立费米子质谱的统一理论。假设有五种希格斯场以指数形式的相对汤河耦合常数介导轻费米子的电弱双峰和重外来费子的电弱单峰之间的标量相互作用。在一阶跷跷板逼近下,对所有带电费米子扇形推导具有相等对角线元素的准民主质量矩阵,并在额外的ansatz下为中微子扇形获得对角线质量矩阵。假设真空中微子振荡,研究了太阳和大气中微子异常的问题。

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