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Dark Matter in a twisted bottle

机译:扭曲瓶中的暗物质

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摘要

The real projective plane is a compact, non-orientable orbifold of Euler characteristic 1 without boundaries, which can be described as a twisted Klein bottle. We shortly review the motivations for choosing such a geometry among all possible two-dimensional orbifolds, while the main part of the study will be devoted to dark matter study and limits in Universal Extra Dimensional (UED) models based on this peculiar geometry. In the following we consider such a UED construction based on the direct product of the real projective plane with the standard four-dimensional Minkowski space-time and discuss its relevance as a model of a weakly interacting Dark Matter candidate. One important difference with other typical UED models is the origin of the symmetry leading to the stability of the dark matter particle. This symmetry in our case is a remnant of the six-dimensional Minkowski space-time symmetry partially broken by the compactification. Another important difference is the very small mass splitting between the particles of a given Kaluza-Klein tier, which gives a very important role to co-annihilation effects. Finally the role of higher Kaluza-Klein tiers is also important and is discussed together with a detailed numerical description of the influence of the resonances.
机译:真实的投影平面是没有边界的欧拉特征1的紧凑,不可定向的双曲面,可以将其描述为扭曲的克莱因瓶。我们简短地回顾了在所有可能的二维圆环中选择这种几何形状的动机,而研究的主要部分将致力于暗物质研究以及基于这种特殊几何形状的通用超维数(UED)模型的局限性。在下文中,我们考虑了基于真实投影平面与标准四维Minkowski时空的直接积的UED构造,并讨论了其作为弱相互作用暗物质候选模型的相关性。与其他典型UED模型的一个重要区别是对称性的起源,从而导致了暗物质粒子的稳定性。在我们的情况下,这种对称性是六维Minkowski时空对称性的残余,该对称性被压实部分破坏了。另一个重要的区别是给定的Kaluza-Klein层的粒子之间的质量分裂非常小,这对共同-灭效应起着非常重要的作用。最后,较高的Kaluza-Klein层的作用也很重要,并将与共振影响的详细数值描述一起进行讨论。

著录项

  • 来源
    《Journal of High Energy Physics》 |2013年第1期|1-44|共44页
  • 作者单位

    1.Centre de Recherche Astrophysique de Lyon Observatoire de Lyon Université Lyon 1 CNRS UMR 5574 9 avenue Charles André Saint-Genis Laval cedex F-69561 France 2.Ecole Normale Supérieure de Lyon Lyon France 3.Theory Division Physics Department CERN CH-1211 Geneva 23 Switzerland;

    4.Université Lyon 1 CNRS/IN2P3 UMR5822 IPNL Lyon F-69622 Villeurbanne Cedex France;

    4.Université Lyon 1 CNRS/IN2P3 UMR5822 IPNL Lyon F-69622 Villeurbanne Cedex France;

    4.Université Lyon 1 CNRS/IN2P3 UMR5822 IPNL Lyon F-69622 Villeurbanne Cedex France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phenomenology of Field Theories in Higher Dimensions;

    机译:高维领域理论的现象学;

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