论文标题

通货膨胀和电动对称性破坏

Inflation and Electroweak Symmetry Breaking

论文作者

Alexander, Stephon

论文摘要

我们提出了一个宇宙学电动对称性破坏(CEWSB)的模型,其中像希格斯一样的场和弱玻色子量规场的宇宙学背景与重力相互作用,以实现宇宙膨胀的时代,然后随后是希格斯的共振共振预加热。结果,电动对称性破裂的尺度与通货膨胀的结束有关。该理论配备了可以保护希格斯质量的移位对称性,并且与自然通货膨胀及其变体具有紧密相似。随着希格斯田地在通货膨胀结束时的幅度衰减,其质量也出现了。该模型具有内置的HIGGS自我谐振预热机制,该机制可能导致宇宙微波背景(CMB)的出现,这是由于载荷Higgs,Quark和Lepton产生后产生的。我们提供了一种用标准电子理论的现实希格斯 - doublet实施类似机制的途径,并讨论了现象学考虑因素。

We present a model of Cosmological Electroweak Symmetry Breaking (CEWSB), where a Higgs-like field and a cosmological background of weak boson gauge fields interact with gravity to realize the epoch of cosmic inflation, which is then followed by a Higgs resonance preheating. As a result, the scale of electroweak symmetry breaking is linked with the end of inflation. The theory is equipped with a shift symmetry that can protect the Higgs mass, and it has close semblance to natural inflation and its variants. As the Higgs field's amplitude decays at the end of inflation, its mass emerges. The model has a built in Higgs self-resonance preheating mechanism which leads to the possible emergence of the cosmic microwave background (CMB) due to resonant Higgs, quark and lepton production after inflation. We provide a pathway to implement a similar mechanism with the realistic Higgs-doublet of the standard electroweak theory and discuss phenomenological considerations.

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