论文标题

吸热性自我互动的暗物质在银河系般的暗物质光环中

Endothermic self-interacting dark matter in Milky Way-like dark matter haloes

论文作者

O'Neil, Stephanie, Vogelsberger, Mark, Heeba, Saniya, Schutz, Katelin, Rose, Jonah C., Torrey, Paul, Borrow, Josh, Low, Ryan, Adhikari, Rakshak, Medvedev, Mikhail V., Slatyer, Tracy R., Zavala, Jesús

论文摘要

自相互作用的暗物质(SIDM)提供了减轻模拟的冷暗物质(CDM)和观察到的银河特性之间的某些差异的潜力。我们引入了一个出于身体动机的SIDM模型,以了解自我相互作用对银河系和矮星系大小的光环的特性的影响。该模型由深色物质组成,其激发态几乎可以进行弹性和非弹性散射。特别是,该模型包括粒子从基态到激发状态的片段呈现的显着概率。我们模拟了一套带有不同散射横截面的六个模型的缩放银河系大小的N体晕圈,以研究SIDM模型中脱落的效果。我们发现,通过动能的损失,上散射的反应大大增加了主光晕的中心密度。但是,由于存在弹性散射和散射下降,物理模型仍然会导致明显的芯。与主要光晕相比,这些影响在亚呼吸群中并不那么明显,但是与CDM相比,次透的数量减少了。

Self-interacting dark matter (SIDM) offers the potential to mitigate some of the discrepancies between simulated cold dark matter (CDM) and observed galactic properties. We introduce a physically motivated SIDM model to understand the effects of self interactions on the properties of Milky Way and dwarf galaxy sized haloes. This model consists of dark matter with a nearly degenerate excited state, which allows for both elastic and inelastic scattering. In particular, the model includes a significant probability for particles to up-scatter from the ground state to the excited state. We simulate a suite of zoom-in Milky Way-sized N-body haloes with six models with different scattering cross sections to study the effects of up-scattering in SIDM models. We find that the up-scattering reaction greatly increases the central densities of the main halo through the loss of kinetic energy. However, the physical model still results in significant coring due to the presence of elastic scattering and down-scattering. These effects are not as apparent in the subhalo population compared to the main halo, but the number of subhaloes is reduced compared to CDM.

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