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Weyl gauge symmetry and its spontaneous breaking in the standard model and inflation

机译:Weyl Cauge对称性及其在标准模型和通货膨胀中的自发性突破

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摘要

We discuss the local (gauged) Weyl symmetry and its spontaneous breaking and apply it to model building beyond the standard model (SM) and inflation. In models with nonminimal couplings of the scalar fields to the Ricci scalar that are conformal invariant, the spontaneous generation by a scalar field(s) vacuum expectation value of a positive Newton constant demands a negative kinetic term for the scalar field or vice versa. This is naturally avoided in models with additional Weyl gauge symmetry. The Weyl gauge field ω_μ couples to the scalar sector but not to the fermionic sector of a SM-like Lagrangian. The field ω_μ undergoes a Stueckelberg mechanism and becomes massive after “eating” the (radial mode) would-be Goldstone field (dilaton ρ) in the scalar sector. Before the decoupling of ω_μ, the dilaton can act as an UV regulator and maintain the Weyl symmetry at the quantum level, with relevance for solving the hierarchy problem. After the decoupling of ω_μ, the scalar potential depends only on the remaining (angular variables) scalar fields, which can be the Higgs field, inflaton, etc.We show that a successful inflation is then possible with one of these scalar fields identified as the inflaton. While our approach is derived in the Riemannian geometry with ω_μ introduced to avoid ghosts, the natural framework is that ofWeyl geometry, which for the same matter spectrum is shown to generate the same Lagrangian, up to a total derivative.
机译:我们讨论本地(衡量的)Weyl对称性及其自发性破坏,并将其应用于超出标准模型(SM)和通货膨胀的建筑物。在具有作为共形不变的RICCI标量的标量字段的非初始耦合的模型中,通过标量换算的标量场的自发产生是标量场的负动力学术语,反之亦然。这在具有额外的Weyl Cauge对称的模型中自然避免。 Weyl仪表领域ω_μ耦合到标量扇区,而不是对SM样Lagrangian的Fermionic Sector。该磁场ω_μ经过斯图克尔伯格机制,在标量扇区中的“进食”(径向模式)是金石场(Dilatonρ)之后大规模。在ω_μ去耦之前,Dilaton可以充当UV调节器并保持量子水平的威基对称性,具有求解层级问题的相关性。在ω_μ的去耦后,标量电位仅取决于剩余的(角变量)标量字段,该标量字段可以是HIGGS字段,inclaton等.WE显示,这些标量字段中的一个识别出了成功的通货膨胀发炎。虽然我们的方法是在具有ω_μ引入的Riemannian几何形状中导出以避免鬼魂,但是自然框架是其中的ISyLyry,这对于相同的物质频谱显示为产生相同的拉格朗日,直至总衍生物。

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