Merritt David
Department of Physics, Rochester Institute of Technology, Rochester, New York 14623, USA.
Phys Rev Lett. 2004 May 21;92(20):201304. doi: 10.1103/PhysRevLett.92.201304. Epub 2004 May 20.
Annihilation radiation from neutralino dark matter at the Galactic center (GC) would be greatly enhanced if the dark matter were strongly clustered around the supermassive black hole (SBH). The existence of a dark matter "spike" is made plausible by the observed, steeply rising stellar density near the GC SBH. Here the time-dependent equations describing gravitational interaction of the dark matter with the stars are solved. Scattering of dark matter particles by stars would substantially lower the dark matter density near the GC SBH over 10 Gyr, due both to kinetic heating and to capture of dark matter particles by the SBH. This evolution implies a decrease by several orders of magnitude in the observable flux of annihilation products compared with models that associate a steep, dark matter spike with the SBH.
如果暗物质在超大质量黑洞(SBH)周围强烈聚集,那么银河系中心(GC)中中性暗物质的湮灭辐射将会大大增强。在GC的SBH附近观测到恒星密度急剧上升,这使得暗物质“尖峰”的存在变得合理。本文求解了描述暗物质与恒星引力相互作用的时间相关方程。恒星对暗物质粒子的散射会在超过100亿年的时间里大幅降低GC的SBH附近的暗物质密度,这既是由于动力学加热,也是由于SBH对暗物质粒子的捕获。这种演化意味着,与将陡峭的暗物质尖峰与SBH联系起来的模型相比,湮灭产物的可观测通量会降低几个数量级。