论文标题
间接检测中增强暗物质的“非本地”效应
"Non-Local" Effects from Boosted Dark Matter in Indirect Detection
论文作者
论文摘要
间接暗物质(DM)检测通常涉及从高暗物质浓度内部DM歼灭/衰减中出现的标准模型(SM)颗粒的观察。我们考虑了一种歼灭情景,其中该反应必须由涉及的一个DMS引发,而另一个DM则是一个环境非偏见粒子。必须创建此“触发” DM,例如,在先前的DM的重分的灭绝或衰减中。值得注意的是,在银河系中的特定点上,将DM歼灭到伽马射线中实际上可能是在同一星系中的另一点甚至是另一个星系中从其来源传播。这种“非本地”行为导致所得光子信号对银河光环参数的非平凡依赖性,例如DM密度和核心大小,并在所谓的“天体物理” $ J $比例中编码。这些非本地$ J $因素与通常的情况大不相同。该模型的一个独特方面是,矮星系相对于银河系的信号往往会根据其特性从典型值抑制到各个程度。因此,此功能可以潜在地减轻DM歼灭解释对观察到的过量的$ \ sim $ gev光子从银河系的银河中心与来自矮星系中相应信号的明显不观察到的过量的$ \ sim $ gev光子之间。
Indirect dark matter (DM) detection typically involves the observation of standard model (SM) particles emerging from DM annihilation/decay inside regions of high dark matter concentration. We consider an annihilation scenario in which this reaction has to be initiated by one of the DMs involved being boosted while the other is an ambient non-relativistic particle. This "trigger" DM must be created, for example, in a previous annihilation or decay of a heavier component of DM. Remarkably, boosted DM annihilating into gamma-rays at a specific point in a galaxy could actually have traveled from its source at another point in the same galaxy or even from another galaxy. Such a "non-local" behavior leads to a non-trivial dependence of the resulting photon signal on the galactic halo parameters, such as DM density and core size, encoded in the so-called "astrophysical" $J$-factor. These non-local $J$-factors are strikingly different than the usual scenario. A distinctive aspect of this model is that the signal from dwarf galaxies relative to the Milky Way tends to be suppressed from the typical value to various degrees depending on their characteristics. This feature can thus potentially alleviate the mild tension between the DM annihilation explanation of the observed excess of $\sim$ GeV photons from the Milky Way's galactic center vs. the apparent non-observation of the corresponding signal from dwarf galaxies.