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首页> 外文期刊>The journal of high energy physics >Sterile neutrino dark matter and leptogenesis in Left-Right Higgs Parity
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Sterile neutrino dark matter and leptogenesis in Left-Right Higgs Parity

机译:左右Higgs奇偶阶段的无菌中性菌暗物质和含乳酸

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A bstract The standard model Higgs quartic coupling vanishes at (10~(9)? 10~(13)) GeV. We study SU(2)_( L ) × SU(2)_( R ) × U(1)_( B?L )theories that incorporate the Higgs Parity mechanism, where this becomes the scale of Left-Right symmetry breaking, v _( R ). Furthermore, these theories solve the strong CP problem and predict three right-handed neutrinos. We introduce cosmologies where SU(2)_( R ) × U(1)_( B?L )gauge interactions produce right-handed neutrinos via the freeze-out or freeze-in mechanisms. In both cases, we find the parameter space where the lightest right-handed neutrino is dark matter and the decay of a heavier one creates the baryon asymmetry of the universe via leptogenesis. A theory of flavor is constructed that naturally accounts for the lightness and stability of the right-handed neutrino dark matter, while maintaining sufficient baryon asymmetry. The dark matter abundance and successful natural leptogenesis require v _( R )to be in the range (10~(10) ? 10~(13)) GeV for freeze-out, in remarkable agreement with the scale where the Higgs quartic coupling vanishes, whereas freeze-in requires v _( R )? 10~(9)GeV. The allowed parameter space can be probed by the warmness of dark matter, precise determinations of the top quark mass and QCD coupling by future colliders and lattice computations, and measurement of the neutrino mass hierarchy.
机译:Bstract标准型号HGGS四静脉耦合消失(10〜(9)?10〜(13))GEV。我们研究SU(2)_(l)×su(2)_(r)×u(1)_(b?l)合并HIGGS奇偶校验机制的理论,在那里它成为左右对称性的规模, v _(r)。此外,这些理论解决了强大的CP问题并预测了三个右手中微子。我们介绍了SU(2)_(R)×U(1)_(B 2 L)计量相互作用通过冻结或冷冻机制产生右手中微子的宇宙。在这两种情况下,我们发现光临最轻右手中微子是暗物质的参数空间,并且较重的衰减通过溶渗滤产生宇宙的重组不对称。构建一种味道理论,其自然地占右手中性耳暗物质的亮度和稳定性,同时保持足够的甲芳不对称性。暗物质丰富和成功的天然含量,需要v _(r)在范围内(10〜(10)?10〜(13))GEV,以冻结,与HIG​​GS四季耦合消失的规模显着协议,而冻结需要v _(r)? 10〜(9)GEV。允许的参数空间可以通过暗物质的温暖,精确确定顶部夸克质量和QCD耦合通过未来的侵占和晶格计算,以及测量中微子质量层次结构。

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