The minimal flavor structure of quarks and leptons

Ying Zhang
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Abstract

Abstract A flavor structure with minimal parameters is proposed to address the fermion mass hierarchy and flavor mixing for quarks and leptons. Yukawa interaction is reconstructed in a new basis to show a homological flat structure for up-type quarks, down-type quarks, charged leptons and Dirac neutrinos. A SO(2)^f_{LR} flavor symmetry is found from the hierarchy masses of quarks and leptons, which dominated CKM mixing for quarks and PMNS for leptons. Since the minimal flavor structure successfully addresses CKM and PMNS even in the mass hierarchy limit, mass hierarchy and flavor mixing are two independent questions. As a prediction, a sum rule on the mixing angles and CP violation phase is suggested, which explains the smallness of s13 as a natural result of the mass hierarchy. Generalizing the flat structure to quarks and leptons, a unified Yukawa interaction is achieved for all fermions with only a single coupling.
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夸克和轻子的最小风味结构
摘要为了解决费米子质量层次和夸克和轻子的风味混合问题,提出了一种具有最小参数的风味结构。在一个新的基础上重建汤川相互作用,显示了上型夸克、下型夸克、带电轻子和狄拉克中微子的同构扁平结构。从夸克和轻子的层次质量中发现了SO(2)^f_{LR}风味对称,这种对称性支配着夸克的CKM混合和轻子的PMNS混合。由于最小风味结构成功地解决了CKM和PMNS,即使在质量层次限制下,质量层次和风味混合是两个独立的问题。作为预测,提出了混合角和CP破坏相的和规则,解释了s13的小是质量层次的自然结果。将平面结构推广到夸克和轻子,所有费米子都实现了统一的汤川相互作用,只有一个单一的耦合。
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