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暗物质湮灭产生的银河系中心伽马射线过量:是否存在黑洞尖峰?

Galactic center gamma-ray excess from dark matter annihilation: is there a black hole spike?

作者信息

Fields Brian D, Shapiro Stuart L, Shelton Jessie

机构信息

Departments of Physics and of Astronomy, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

Phys Rev Lett. 2014 Oct 10;113(15):151302. doi: 10.1103/PhysRevLett.113.151302. Epub 2014 Oct 9.

Abstract

If the supermassive black hole Sgr A* at the center of the Milky Way grew adiabatically from an initial seed embedded in a Navarro-Frenk-White dark matter (DM) halo, then the DM profile near the hole has steepened into a spike. We calculate the dramatic enhancement to the gamma-ray flux from the Galactic center (GC) from such a spike if the 1-3 GeV excess observed in Fermi data is due to DM annihilations. We find that for the parameter values favored in recent fits, the point-source-like flux from the spike is 35 times greater than the flux from the inner 1° of the halo, far exceeding all Fermi point source detections near the GC. We consider the dependence of the spike signal on astrophysical and particle parameters and conclude that if the GC excess is due to DM, then a canonical adiabatic spike is disfavored by the data. We discuss alternative Galactic histories that predict different spike signals, including (i) the nonadiabatic growth of the black hole, possibly associated with halo and/or black hole mergers, (ii) gravitational interaction of DM with baryons in the dense core, such as heating by stars, or (iii) DM self-interactions. We emphasize that the spike signal is sensitive to a different combination of particle parameters than the halo signal and that the inclusion of a spike component to any DM signal in future analyses would provide novel information about both the history of the GC and the particle physics of DM annihilations.

摘要

如果银河系中心的超大质量黑洞人马座A*是从嵌入纳瓦罗-弗伦克-怀特暗物质(DM)晕中的初始种子绝热生长而来,那么黑洞附近的暗物质分布会变陡形成一个尖峰。如果费米数据中观测到的1 - 3 GeV过剩是由于暗物质湮灭,我们计算了来自银河系中心(GC)的伽马射线通量因这样一个尖峰而产生的显著增强。我们发现,对于近期拟合中所青睐的参数值,尖峰产生的类点源通量比晕内部1°区域的通量大35倍,远远超过了费米在银河系中心附近探测到的所有点源。我们考虑了尖峰信号对天体物理和粒子参数的依赖性,并得出结论:如果银河系中心的过剩是由于暗物质造成的,那么数据不支持典型的绝热尖峰。我们讨论了预测不同尖峰信号的银河系不同历史情况,包括(i)黑洞的非绝热增长,可能与晕和/或黑洞合并有关,(ii)暗物质在致密核心中与重子的引力相互作用,如恒星加热,或(iii)暗物质的自相互作用。我们强调,尖峰信号对粒子参数的组合的敏感度与晕信号不同,并且在未来分析中在任何暗物质信号中纳入尖峰成分将提供关于银河系中心历史和暗物质湮灭的粒子物理学的新信息。

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