AI 中文总结
研究将月光理论应用于风味物理并扩展,纳入超对称和模对称,利用输入粒子质量计算各类粒子质量,定义二值模函数,指出有三个可被现有加速器测量的粒子质量。
AI 中文摘要
在之前的论文中,我们基于Cohn、Deutsch、Bagger、West、Conway和S. Norton等人的工作,将月光理论应用于风味物理。本文通过纳入超对称和模对称扩展了前文。我们利用每个家族的一个输入粒子质量来计算所有轻子质量、夸克质量及其超伴子质量。定义了二值模函数,对不同粒子使用不同度数的二值模函数。强调有三个可被现有加速器测量的粒子质量,如超电子质量等,超下夸克质量为0,超奇异夸克质量在KEKB和LHC均可测量,超底夸克质量仅能在LHC测量。
英文摘要
In our previous paper [1], we presented the application of Moonshine to the flavor physics based on the work of Cohn and Deutsch [2] and Bagger and West. Conway and S. Norton [3] and T.Eguchi, H.Ooguri and Y.Tachikawa[4]. We present here the extension of our previous paper [1] by including the supersymmetry and the modular symmetry. We calculate all the lepton masses and the quark masses and their super partner masses by using the one input particle mass for each family. The two valued modular function is defined in equation(7). We define the two valued modular function of degree K in equation (7). We use K = 1 two valued modular function for the charged leptons and k = 2 two valued modular function for the neutrino and for the up quarks and k = 3 two valued modular function for the down quarks. We emphasize that we have three particle masses which can be measured by the existing accelerators such as KEK B factory or CERN LHC. One is super electron mass "Me,s =847 MeV" which is slightly lower than the proton mass. The Super d, s and b quark masses are 0 GeV, 5.56 GeV, and 2193.4 GeV. Super down quark mass is 0 and super strange quark mass can be measured both in KEKB and in CERN LHC. The super bottom quark mass can be measured only in LHC.
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