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The problem of weak and strong nuclear forces and prediction of the Higgs-Boson mass from the GEMS (Gravity electromagnetism strong) unification theory

机译:弱和强核力的问题以及根据GEMS(重力电磁强)统一理论进行的希格斯-玻色子质量的预测

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The GEMS (Gravity Electro-Magnetism Strong) theory is extended to the problem of Weak and Strong Nuclear Forces and the problem of the Higgs Boson mass, as the beginning of an effort to include short range Nuclear Forces in the successful GEM unification theory. The presence of a compact 5th dimension is found to create subatomic structures upon which surface resonances and Mie scatterings occur, and these resonances can give rise quanta, called, here, mieons, that mediate nuclear forces.. In the Kaluza-Klein theory of EM and gravity, a 5th force field called the ???Radion??? arises as a scalar, with a signature number of the Radion interaction in the GEM theory: =42.8503. Higher order resonances off the electrostatic radii of the electron, proton and 5th dimension size form of the GEM theory, generate the quanta with masses of the pion m???° = 2 me /???? ?????140.0 MeV and Z boson: mZ =2???3 mp = 80.4 GeV. The ???¨c meson m???¨ =2985 GeV is identified with the 5th dimension compactification force mediated by the Radion field. Another particle associated with is the Radion scattering quanta off the fifth dimension with a mass ???3m???¨ ????? 127.7 GeV, which is the Higgs-Boson.
机译:GEMS(重力电磁强)理论已扩展到弱和强核力问题以及希格斯玻色子质量问题,这是将短程核力纳入成功的GEM统一理论的努力的开端。发现存在紧密的第五维会创建亚原子结构,在其上发生表面共振和Mie散射,并且这些共振可以产生介导核力的上升量子,在这里称为微子。。和重力,第五力场称为“ Radi”以标量形式出现,在GEM理论中具有Radion相互作用的签名号:= 42.8503。 GEM理论的电子静电半径,质子和第5维尺寸形式的较高阶共振产生具有pion质量的量子m m = 0 = 2 me / m +。 140.0MeV和Z玻色子:mZ = 2×3mp = 80.4GeV。用介子Radion场介导的第5维压实力确定“介子m” = 2985 GeV。另一个与之相关的粒子是质量为3m的质量离开第五维的Radon散射量子。 127.7 GeV,这是希格斯玻色子。

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