Electroweak-like baryogenesis with new chiral matter

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作者
Kohei Fujikura
Keisuke Harigaya
Yuichiro Nakai
Ruoquan Wang
机构
[1] Tokyo Institute of Technology,Department of Physics
[2] Institute for Advanced Study,School of Natural Sciences
[3] Shanghai Jiao Tong University,Tsung
[4] Rutgers University,Dao Lee Institute and School of Physics and Astronomy
关键词
Beyond Standard Model; Cosmology of Theories beyond the SM;
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摘要
We propose a framework where a phase transition associated with a gauge symmetry breaking that occurs (not far) above the electroweak scale sets a stage for baryogenesis similar to the electroweak baryogenesis in the Standard Model. A concrete realization utilizes the breaking of SU(2)R× U(1)X→ U(1)Y. New chiral fermions charged under the extended gauge symmetry have nonzero lepton numbers, which makes the B − L symmetry anomalous. The new lepton sector contains a large flavor-dependent CP violation, similar to the Cabibbo-Kobayashi-Maskawa phase, without inducing sizable electric dipole moments of the Standard Model particles. A bubble wall dynamics associated with the first-order phase transition and SU(2)R sphaleron processes generate a lepton asymmetry, which is transferred into a baryon asymmetry via the ordinary electroweak sphaleron process. Unlike the Standard Model electroweak baryogenesis, the new phase transition can be of the strong first order and the new CP violation is not significantly suppressed by Yukawa couplings, so that the observed asymmetry can be produced. The model can be probed by collider searches for new particles and the observation of gravitational waves. One of the new leptons becomes a dark matter candidate. The model can be also embedded into a left-right symmetric theory to solve the strong CP problem.
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