论文标题

从弱规模到大统一量表的男性生成

Baryogenesis from the weak scale to the grand unification scale

论文作者

Bodeker, Dietrich, Buchmuller, Wilfried

论文摘要

我们回顾了重点对电动性男性生成和瘦化生成的重点的当前状态。对SU(5)肠道模型进行了第一个详细的研究,其中leptoquarks的CP侵入衰减会产生重子不对称。这些肠道模型被发现在高温下发现B+L违反SPHALERON过程的情况被排除在外。然而,出现了一种新的可能性,是电型重生发生的。在这里,Sphaleron过程在强一阶相变时会产生重子不对称。在标准模型的许多扩展中已经研究了这种机制。但是,来自LHC和低能精度实验的约束不包括大多数已知模型,而Electroweak Symmetry Breaking breaking of Electroweak Symmetry Breaking的复合材料模型是一种有趣的可能性。 SPHALERON过程也是瘦化生成的基础,其中CP侵入性的右手中微子的腐烂会产生Lepton不对称性,该不对称部分被部分转化为Baryon不对称性。该机制与肠道重生的一种密切相关,基于肠模型的简单估计可以解释观察到的baryon与光子比的数量级。在一流的近似值中,已经得出了在光中微子质量上的上微子质量上的上微子上微子上微子上微子上微子上微子质量之和的宇宙上微子上微子的上微子。对于准脱位的右中微子,可以将瘦素生成温度从肠道尺度降低至弱尺度,而GEV无菌性NETINOS的CP侵略性振荡也可以导致成功的Leptogenogeny。在开发热卵生生成的完整田间理论描述方面取得了重大进展,这表明与热等离子体的仪表玻色子的相互作用起着至关重要的作用。最后,我们讨论了最近的想法,如何通过重力波探测如何在肠道尺度上探测肠道的机制和B-L。

We review the current status of baryogenesis with emphasis on electroweak baryogenesis and leptogenesis. The first detailed studies were carried out for SU(5) GUT models where CP-violating decays of leptoquarks generate a baryon asymmetry. These GUT models were excluded by the discovery of B+L violating sphaleron processes at high temperatures. Yet a new possibility emerged, electroweak baryogenesis. Here sphaleron processes generate a baryon asymmetry during a strongly first-order phase transition. This mechanism has been studied in many extensions of the Standard Model. However, constraints from the LHC and from low-energy precision experiments exclude most of the known models, leaving composite Higgs models of electroweak symmetry breaking as an interesting possibility. Sphaleron processes are also the basis of leptogenesis, where CP-violating decays of heavy right-handed neutrinos generate a lepton asymmetry which is partially converted to a baryon asymmetry. This mechanism is closely related to the one of GUT baryogenesis, and simple estimates based on GUT models can explain the order of magnitude of the observed baryon-to-photon ratio. In the one-flavour approximation an upper bound on the light neutrino masses has been derived which is consistent with the cosmological upper bound on the sum of neutrino masses. For quasi-degenerate right-handed neutrinos the leptogenesis temperature can be lowered from the GUT scale down to the weak scale, and CP-violating oscillations of GeV sterile neutinos can also lead to successfull leptogenesis. Significant progress has been made in developing a full field theoretical description of thermal leptogenesis, which demonstrated that interactions with gauge bosons of the thermal plasma play a crucial role. Finally, we discuss recent ideas how the seesaw mechanism and B-L breaking at the GUT scale can be probed by gravitational waves.

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