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Inflationary cosmology and the standard model Higgs with a small Hubble-induced mass

机译:通货膨胀宇宙学和标准模型希格斯的哈勃效应较小

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We study the dynamics of the standard model Higgs field in the inflationary cosmology. Since metastability of our vacuum is indicated by the current experimental data of the Higgs boson and top quark, inflation models with a large Hubble parameter may have a problem: In such models, the Higgs field rolls down towards the unwanted true vacuum due to the large fluctuation in the inflationary background. However, this problem can be relaxed by supposing an additional mass term for the Higgs field generated during and after inflation. We point out that it does not have to be larger than the Hubble parameter if the number of e -folds during inflation is not too large. We demonstrate that a high reheating temperature is favored in such a relatively small mass case and it can be checked by future gravitational wave observations. Such an induced mass can be generated by, e.g. , a direct coupling to the inflaton field or nonminimal coupling to gravity.
机译:我们研究通货膨胀宇宙学中标准模型希格斯场的动力学。由于希格斯玻色子和顶夸克的当前实验数据表明了我们真空的亚稳性,因此具有较大哈勃参数的充气模型可能会出现问题:在此类模型中,希格斯场会由于较大的负压而向下滚动到不需要的真实真空通货膨胀背景的波动。但是,可以通过假设在充气期间和充气之后产生的希格斯场的附加质量项来缓解此问题。我们指出,如果在充气过程中电子折叠的数量不是太大,则不必大于哈勃参数。我们证明在这样一个相对较小的质量情况下,较高的加热温度是有利的,并且可以通过将来的重力波观测来检查。这种诱发的质量可以通过例如产生。 ,直接耦合到充气子场或非最小耦合到重力。

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