4.4 Article

A new insight into the phase transition in the early Universe with two Higgs doublets

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 5, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP05(2018)151

Keywords

Beyond Standard Model; Thermal Field Theory; Higgs Physics; Cosmology of Theories beyond the SM

Funding

  1. Collaborative Research Fund (CRF) [HUKST4/CRF/13G]
  2. LPSC Grenoble
  3. National Natural Science Foundation of China [11605016]
  4. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education, Science and Technology [NRF- 2016R1A2B4008759]
  5. Korea Research Fellowship Program through the National Research Foundation of Korea (NRF) - Ministry of Science, and I. C. T [2017H1D3A1A01014046]
  6. Villum Fonden
  7. Chongqing University
  8. National Research Foundation of Korea [2017H1D3A1A01014046, 2016R1A2B4008759] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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We study the electroweak phase transition in the alignment limit of the CP-conserving two-Higgs-doublet model (2HDM) of Type I and Type II. The effective potential is evaluated at one-loop, where the thermal potential includes Daisy corrections and is reliably approximated by means of a sum of Bessel functions. Both 1-stage and 2-stage electroweak phase transitions are shown to be possible, depending on the pattern of the vacuum development as the Universe cools down. For the 1-stage case focused on in this paper, we analyze the properties of phase transition and discover that the field value of the electroweak symmetry breaking vacuum at the critical temperature at which the first order phase transition occurs is largely correlated with the vacuum depth of the 1-loop potential at zero temperature. We demonstrate that a strong first order electroweak phase transition (SFOEWPT) in the 2HDM is achievable and establish benchmark scenarios leading to different testable signatures at colliders. In addition, we verify that an enhanced triple Higgs coupling (including loop corrections) is a typical feature of the SFOPT driven by the additional doublet. As a result, SFOEWPT might be able to be probed at the LHC and future lepton colliders through Higgs pair production.

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