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Algebraic Hyperstructure of Observable Elementary Particles Including the Higgs Boson
Proceedings of the National Academy of Sciences, India Section A: Physical Sciences ( IF 0.9 ) Pub Date : 2018-09-18 , DOI: 10.1007/s40010-018-0553-z
Bijan Davvaz , A. Dehghan Nezhad , S. M. Moosavi Nejad

The standard model (SM) of particle physics is a gauge-field theoretical model, produced of two non-abelian gauge groups and one abelian gauge group. This model has proved to be extremely successful during the past three decades. The Higgs boson which plays a unique role in the SM was the last part of the SM that was experimentally verified in 2012. In the SM, all observable particles are classified into three generations of matter, i.e., hadrons, leptons and gauge vector bosons. In this paper it is shown that the leptons and gauge bosons along with the interactions between their members construct a weak algebraic hyperstructure. Weak algebraic hyperstructures or \(H_v\)-structures introduced by Vougiouklis. The class of \(H_v\)-structures is larger than the well-known one originated from the hypergroup in the sense of Marty. This new sight to the elementary particles would make a new arrangement to the elementary particles.

中文翻译:

可观察的基本粒子包括希格斯玻色子的代数超结构

粒子物理学的标准模型(SM)是一个规范场理论模型,由两个非阿贝尔规范组和一个阿贝尔规范组组成。在过去的三十年中,该模型已被证明非常成功。在SM中发挥独特作用的希格斯玻色子是SM的最后一部分,该部分在2012年进行了实验验证。在SM中,所有可观察到的粒子分为三代物质,即强子,轻子和规范矢量玻色子。在本文中,证明了轻子和规范玻色子及其成员之间的相互作用构成了弱代数超结构。Vougiouklis引入的弱代数超结构或\(H_v \)-结构。\(H_v \)的类别在Marty的意义上,结构比起源于超群的众所周知的结构要大。对基本粒子的这种新视野将对基本粒子进行新的排列。
更新日期:2018-09-18
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