Gustafsson Michael, Lundström Erik, Bergström Lars, Edsjö Joakim
Department of Physics, Stockholm University, AlbaNova University Center, SE - 106 91 Stockholm, Sweden.
Phys Rev Lett. 2007 Jul 27;99(4):041301. doi: 10.1103/PhysRevLett.99.041301.
One way to unambiguously confirm the existence of particle dark matter and determine its mass would be to detect its annihilation into monochromatic gamma-rays in upcoming telescopes. One of the most minimal models for dark matter is the inert doublet model, obtained by adding another Higgs doublet with no direct coupling to fermions. For a mass between 40 and 80 GeV, the lightest of the new inert Higgs particles can give the correct cosmic abundance of cold dark matter in agreement with current observations. We show that for this scalar dark matter candidate, the annihilation signal of monochromatic gammagamma and Zgamma final states would be exceptionally strong. The energy range and rates for these gamma-ray line signals make them ideal to search for with the soon upcoming GLAST satellite.
明确证实粒子暗物质的存在并确定其质量的一种方法是,在即将面世的望远镜中探测其湮灭产生的单色伽马射线。暗物质最简洁的模型之一是惰性二重态模型,它是通过添加另一个与费米子无直接耦合的希格斯二重态得到的。对于40至80吉电子伏特之间的质量,新的惰性希格斯粒子中最轻的那个能够给出与当前观测结果相符的正确宇宙冷暗物质丰度。我们表明,对于这种标量暗物质候选者,单色γγ和Zγ末态的湮灭信号会异常强烈。这些伽马射线谱线信号的能量范围和速率使其成为即将发射的GLAST卫星进行搜寻的理想目标。