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Higgs inflation and cosmological electroweak phase transition with N scalars in the post-Higgs era

机译:HIGGS通货膨胀和宇宙学电壕相传在HIGGS时代中的N个标量

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摘要

We study inflation and cosmological electroweak phase transitions utilizing the standard model augmented by N scalars respecting a global O(N) symmetry. We observe that the representation of the global symmetry is restricted by the inflationary observables and the condition of a strongly first-order electroweak phase transition. Theoretical constraints including the stability, perturbativity, and unitarity are used to bound the model parameter space. The electroweak precision observables and Higgs precision limit the representation of the symmetry. We evaluate the possibility to simultaneously address the inflation and the dark matter after considering the experimental constraints from the future leptonic colliders. When the O(N) symmetry respected by the N scalar is spontaneously broken to the O(N - 1) symmetry, both the one-step and two-step SFOEWPT can occur within the inflation viable parameter regions, which will be tested by the future CEPC, ILC, and FCC-ee. The relation between the number of Goldstones and the SFOEWPT condition depends on phase transition patterns. The situations of Goldstone faking neutrinos and contributions to dark radiation are investigated.
机译:我们利用N个标准的标准模型研究通货膨胀和宇宙学电壕相变,尊重全局O(n)对称性。我们观察到全局对称的表示受到通胀可观察的限制和强烈一阶电导率相转变的条件。包括稳定性,扰动和统一性的理论限制用于绑定模型参数空间。 Electroweak精密可观察到和Higgs精度限制了对称性的表示。在考虑到未来的轻蛋白侵占者的实验限制之后,我们评估了同时解决通货膨胀和暗物质的可能性。当N标量遵守的O(n)对称性被自发地破碎O(n-1)对称时,单步和两步SFOewpt都可以发生在充气中的可行参数区域内,这将由其测试未来CEPC,ILC和FCC-EE。金工石数量与SFOEWPT条件之间的关系取决于相变模式。研究了Goldstone假装中微子和对暗辐射的贡献的情况。

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