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SUSY & STRONG NUCLEAR GRAVITY IN (120-160) GeV MASS RANGE

机译:(120-160)GeV质量范围内的SUSY和强核重力

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摘要

It is suggested that, in super symmetry, the fermion and boson mass ratio is ψ = 2.262218404 but not unity. Based on strong nuclear gravity and super symmetry in our previous papers it is suggested that: the W boson is the super symmetric boson of the top quark fermion and the charged Higg's boson pair generates the neutralized Z boson. In this paper it is suggested that the charged Higg's fermion. and nuclear charge radius play a crucial role in the emission of the electron in Beta decay. It is noticed that the purpose of the previously proposed 11460 MeV fermion can be obtained with the charged Higg's fermion. The recently discovered neutral boson of rest energy 120 to 160 MeV seems to be composed of a Higg's charged boson and a W boson. Its obtained mass is 126 GeV. Concepts of modified SUSY and Strong nuclear gravity can be considered for main stream research.
机译:建议在超对称状态下,费米子与玻色子的质量比为ψ= 2.262218404,而不是1。基于我们先前论文中的强核引力和超对称性,建议:W玻色子是顶夸克费米子的超对称玻色子,带电的希格玻色子对生成中和的Z玻色子。在本文中,建议带电的希格费米子。核电荷半径在Beta衰变中的电子发射中起关键作用。注意,可以使用带电的希格费米子来达到先前提出的11460 MeV费米子的目的。最近发现的静能量为120至160 MeV的中性玻色子似乎由希格的带电玻色子和W玻色子组成。其获得的质量为126 GeV。主流研究可以考虑使用改良的SUSY和强核引力的概念。

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  • 来源
    《Hadronic Journal》 |2011年第3期|p.277-300|共24页
  • 作者单位

    Honorary Faculty, I-SERVE Alakapuri, Hyderabad-35, India;

    Department of Nuclear Physics Andhra University Visakhapatnam-03, India;

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