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Universal Landau Pole at the Planck scale

机译:Planck Scale的通用Landau杆

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摘要

The concept of quantum gravity entails that the usual geometry loses its meaning at very small distances and therefore the grand unification of all gauge interactions with the property of asymptotic freedom happens to be questionable. We propose an unification of all gauge interactions in the form of an "Universal Landau Pole" (ULP), at which all gauge couplings diverge (or, better to say, become very strong).We show that the Higgs quartic coupling also substantially increases whereas the Yukawa couplings tend to zero. Such a singular (or strong coupling) unification is obtained after adding to the Standard Model matter more fermions with vector gauge couplings and hypercharges identical to the SM fermions. The influence of new particles also may prevent the Higgs quartic coupling from crossing zero, thus avoiding the instability (or metastability) of the SM vacuum. As well this fermion pattern opens a way to partially solve the hierarchy problem between masses of quarks and leptons.
机译:量子重力的概念需要通常的几何形状在非常小的距离上失去了它的意义,因此所有仪表与渐近自由性的互动的宏大统一恰好是值得怀疑的。我们提出了一个统一的“通用Landau杆”(ULP)的形式统一,所有仪表联轴器分歧(或者更好地说,变得非常强)。我们表明HIGGS的四周耦合也显着增加虽然yukawa联轴器趋于零。在向标准模型物质添加到具有载体计的耦合和与SM码头相同的超收费中,获得这种奇异(或强耦合)统一。新颗粒的影响也可以防止HGGS四分之一耦合交叉零,从而避免了SM真空的不稳定性(或常温性)。此外,这种费用模式开启了一种方法可以部分地解决夸克和鞘质量之间的层次问题。

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