首页> 外文会议>CETUP* >A novel approach in the WIMP quest: cross-correlation of gamma-ray anisotropies and cosmic shear
【24h】

A novel approach in the WIMP quest: cross-correlation of gamma-ray anisotropies and cosmic shear

机译:WIMP任务中的一种新方法:γ射线各向异性和宇宙剪切的互相关

获取原文

摘要

The presence of large amounts of dark matter in the Universe is the expected source of two different cosmological effects: small gravitational distortions in the shapes of background galaxies (cosmic shear) and the cosmological emission of gamma rays. In fact, dark matter structures are responsible for the bending of light in the weak lensing regime, and those same cosmological objects can emit gamma-rays, either because they host astrophysical sources (active galactic nuclei or starforming galaxies) or directly by dark matter annihilations or decays. Gamma-rays emission should therefore exhibit strong correlation with the cosmic shear signal. In this note we report on the computation of the cross-correlation angular power spectrum of cosmic shear and gamma-rays produced by the annihilation/decay of weakly interacting massive composing particle dark matter, as well as by astrophysical sources.We show that the shear/gamma-rays cross-correlation provides novel information on the composition of the extra-galactic gamma-ray background and can represent a potentially detectable signal by combining Fermi-LAT data with forthcoming galaxy surveys, like Dark Energy Survey and Euclid. At the same time, a detection of a cross-correlation signal would demonstrate that the weak lensing observables are indeed due to particle DM matter and not to possible modifications of General Relativity.
机译:宇宙中大量暗物质的存在是两种不同宇宙学影响的预期来源:背景星系形状(宇宙剪切)的形状和伽马射线的宇宙学发射的小的引力扭曲。事实上,暗物质结构负责弱镜头制度中的光弯曲,并且那些相同的宇宙物质可以发出γ射线,因为它们是托管天体物理源(活性银核或颗星)或直接通过暗物质湮灭或衰减。因此,伽马射线发射应表现出与宇宙剪切信号的强烈相关性。在本说明中,我们报告了通过枯萎/衰减产生的宇宙剪切和伽马射线的互相关角度功率谱的计算,其剥离/衰减弱相互作用组成粒子暗物质以及天体物理源。我们展示了剪切/伽马射线交叉相关提供了关于额外的半乳涂伽马射线背景的组成的新信息,并且可以通过将Fermi-Lat数据与即将举行的Galaxy调查相结合,例如暗能量调查和欧几里德,代表潜在可检测的信号。同时,对互相关信号的检测将证明弱镜头可观察物确实是由于粒子DM物质而不是通用相对性的可能修改。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号