Impact of a CP-Violating Higgs Sector: From LHC to Baryogenesis
- Creators
- Shu, Jing
- Zhang, Yue-Yang
Abstract
We observe a generic connection between LHC Higgs data and electroweak baryogenesis: the particle that contributes to the CP-odd hgg or hγγ vertex would provide the CP-violating source during a first-order phase transition. It is illustrated in the two Higgs doublet model that a common complex phase controls the lightest Higgs properties at the LHC, electric dipole moments, and the CP-violating source for electroweak baryogenesis. We perform a general parametrization of Higgs effective couplings and a global fit to the LHC Higgs data. Current LHC measurements prefer a nonzero phase for tan β≲1 and electric dipole moment constraints still allow an order-one phase for tan β∼1, which gives sufficient room to generate the correct cosmic baryon asymmetry. We also give some prospects in the direct measurements of CP violation in the Higgs sector at the LHC.
Additional Information
© 2013 American Physical Society. Received 13 April 2013; revised manuscript received 4 July 2013; published 27 August 2013. We thank Q. H. Cao, C. Cheung, T. Liu, M. Ramsey- Musolf, and M. B. Wise for useful discussions and especially J. Zupan for the collaboration at the early stage. Y. Z. acknowledges the hospitality from the Institute of Theoretical Physics and Kavli Institute for Theoretical Physics China where part of the work has been done. The research of Y. Z. is funded by the Gordon and Betty Moore Foundation through Grant No. 776 to the Caltech Moore Center for Theoretical Cosmology and Physics and in part by the U.S. DOE Grant No. DE-FG02-92ER40701.Attached Files
Published - PhysRevLett.111.091801.pdf
Submitted - 1304.0773v1.pdf
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Additional details
- Eprint ID
- 41501
- Resolver ID
- CaltechAUTHORS:20130924-111407015
- Gordon and Betty Moore Foundation
- 776
- Department of Energy (DOE)
- DE-FG02-92ER40701
- Created
-
2013-09-24Created from EPrint's datestamp field
- Updated
-
2021-11-10Created from EPrint's last_modified field
- Caltech groups
- Caltech Theory, Moore Center for Theoretical Cosmology and Physics