Universität Hamburg, Institut für Experimentalphysik, Hamburg, Germany.
Phys Rev Lett. 2011 Apr 22;106(16):161301. doi: 10.1103/PhysRevLett.106.161301. Epub 2011 Apr 18.
A search for a very-high-energy (VHE; ≥100 GeV) γ-ray signal from self-annihilating particle dark matter (DM) is performed towards a region of projected distance r∼45-150 pc from the Galactic center. The background-subtracted γ-ray spectrum measured with the High Energy Stereoscopic System (H.E.S.S.) γ-ray instrument in the energy range between 300 GeV and 30 TeV shows no hint of a residual γ-ray flux. Assuming conventional Navarro-Frenk-White and Einasto density profiles, limits are derived on the velocity-weighted annihilation cross section (σv) as a function of the DM particle mass. These are among the best reported so far for this energy range and in particular differ only little between the chosen density profile parametrizations. In particular, for the DM particle mass of ∼1 TeV, values for (σv) above 3×10(-25) cm(3) s(-1) are excluded for the Einasto density profile.
针对距离银河系中心投影距离 r∼45-150 pc 的区域,进行了一项来自自湮灭粒子暗物质 (DM) 的超高能 (VHE;≥100 GeV) γ射线信号搜索。使用 High Energy Stereoscopic System (H.E.S.S.) γ射线仪器在 300 GeV 至 30 TeV 的能段测量的扣除背景后的 γ射线能谱,没有残余 γ射线通量的迹象。假设采用传统的 Navarro-Frenk-White 和 Einasto 密度分布,推导出了速度加权湮灭截面 (σv) 作为 DM 粒子质量的函数的限制。这些限制是迄今为止在该能段报告的最好的限制之一,特别是在所选的密度分布参数化之间差异很小。特别是对于 DM 粒子质量约为 1 TeV,Einasto 密度分布排除了 (σv) 值大于 3×10(-25) cm(3) s(-1)的情况。