Babu K S, Mohapatra R N, Nasri S
Department of Physics, Oklahoma State University, Stillwater, OK 74078, USA.
Phys Rev Lett. 2006 Sep 29;97(13):131301. doi: 10.1103/PhysRevLett.97.131301. Epub 2006 Sep 25.
We present a new mechanism for generating the baryon asymmetry of the Universe directly in the decay of a singlet scalar field S(r) with a weak scale mass and a high dimensional baryon number-violating coupling. Unlike most currently popular models, this mechanism, which becomes effective after the electroweak phase transition, does not rely on the sphalerons for inducing a nonzero baryon number. CP asymmetry in S(r) decay arises through loop diagrams involving the exchange of W+/- gauge bosons and is suppressed by light quark masses, leading naturally to a value of eta(B) approximately 10(-10). The simplest realization of this idea which uses a six quark DeltaB=2 operator predicts colored scalars accessible to the CERN Large Hadron Collider and neutron-antineutron oscillation within reach of the next-generation experiments.
我们提出了一种新机制,可在具有弱标度质量和高维重子数违反耦合的单态标量场S(r)的衰变过程中直接产生宇宙的重子不对称性。与目前大多数流行模型不同,这种在电弱相变后生效的机制不依赖于斯费勒龙来诱导非零重子数。S(r)衰变中的CP不对称性通过涉及W+/-规范玻色子交换的圈图产生,并受到轻夸克质量的抑制,自然地导致η(B)的值约为10^(-10)。这个想法的最简单实现使用了一个六夸克ΔB = 2算符,预测了欧洲核子研究中心大型强子对撞机可及的有色标量以及下一代实验可及的中子 - 反中子振荡。