论文标题
高维理论的温暖暗物质
Warm Dark Matter from Higher-Dimensional Gauge Theories
论文作者
论文摘要
温暖的暗物质颗粒在kev范围内具有质量,通过大量的脱钩时,与仪表理论中的大组表示有关。在本文中,我们介绍了WDM费米子的自由程度。我们的方法与宇宙学研究和天体物理观察结果桥接了较高的粒子物理学理论,我们的方法是两折,即,它包括来自高维表示的现实模型和对观察结果测试的模拟的约束。从杰出的周期性理论中的超级甲虫开始,我们讨论了几种对称性降低,我们考虑了几种适应高度自由度的表示。我们隔离一个自然适应标准模型表示和费米的暗物质的模型,这与大小规模的约束一致。该模型以$ d = 27+3 $的相交方式以一方面提供标准模型的自由度和2048 Fermionic的暗物质自由度,对应于$ \ sim $ 2 kev粒子质量。在这种情况下,我们讨论了理论的含义和可观察的预测。
Warm dark matter particles with masses in the keV range have been linked with the large group representations in gauge theories through a high number of species at decoupling. In this paper, we address WDM fermionic degrees of freedom from such representations. Bridging higher-dimensional particle physics theories with cosmology studies and astrophysical observations, our approach is two-folded, i.e., it includes realistic models from higher-dimensional representations and constraints from simulations tested against observations. Starting with superalgebras in exceptional periodicity theories, we discuss several symmetry reductions and we consider several representations that accommodate a high number of degrees of freedom. We isolate a model that naturally accommodates both the standard model representation and the fermionic dark matter in agreement with both large and small-scale constraints. This model considers an intersection of branes in $D=27+3$ in a manner that provides the degrees of freedom for the standard model on one hand and 2048 fermionic degrees of freedom for dark matter, corresponding to a $\sim$2 keV particle mass, on the other. In this context, we discuss the theoretical implications and the observable predictions.