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Electroweak Baryogenesis in Two Higgs Doublet Models and B Meson Anomalies

Journal of High Energy Physics(2011)SCI 2区SCI 1区

Department of Physics | Perimeter Institute for Theoretical Physics

Cited 166|Views8
Abstract
Motivated by 3.9σ evidence of a CP-violating phase beyond the standard model in the like-sign dimuon asymmetry reported by D∅, we examine the potential for two Higgs doublet models (2HDMs) to achieve successful electroweak baryogenesis (EWBG) while explaining the dimuon anomaly. Our emphasis is on the minimal flavour violating 2HDM, but our numerical scans of model parameter space include type I and type II models as special cases. We incorporate relevant particle physics constraints, including electroweak precision data, b → sγ, the neutron electric dipole moment, R b , and perturbative coupling bounds to constrain the model. Surprisingly, we find that a large enough baryon asymmetry is only consistently achieved in a small subset of parameter space in 2HDMs, regardless of trying to simultaneously account for any B physics anomaly. There is some tension between simultaneous explanation of the dimuon anomaly and baryogenesis, but using a Markov chain Monte Carlo we find several models within 1σ of the central values. We point out shortcomings with previous studies that reached different conclusions. The restricted parameter space that allows for EWBG makes this scenario highly predictive for collider searches. We discuss the most promising signatures to pursue at the LHC for EWBG-compatible models.
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Beyond Standard Model,B-Physics,CP violation
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要点】:本文研究了在两重态希格斯模型中实现电弱宇宙不对称性与解释B介子异常现象的可能性,并发现只有模型参数空间的一个小子集可以同时满足这两个条件。

方法】:通过数值扫描两重态希格斯模型的参数空间,并考虑了电弱精确数据、b→sγ衰变、中子电偶极矩、Rb值以及耦合常数限制等粒子物理约束。

实验】:使用Markov链蒙特卡洛方法分析模型参数,发现存在几个在1σ范围内的模型可以解释B介子异常。文章讨论了在LHC上寻找电弱宇宙不对称性兼容模型的最具前景的信号。未提及具体的数据集名称。