论文标题

重制暗物质光环

Baryons Shaping Dark Matter Haloes

论文作者

Cataldi, P., Pedrosa, S., Tissera, P., Artale, C.

论文摘要

在这项工作中,我们旨在研究重子对暗物质(DM)光环结构的影响,重点是恒星盘和光晕形状的存在与重要性之间的相关性。我们研究了Fenix和Eagle宇宙学模拟的DM光环的子样本的特性。我们检查质量范围[10.9-992.3] x 10^{10} msun在z = 0时的光环的中央区域,比较了流体动力运行及其暗物质(DMO)对应物。我们的结果表明,重子对内部光环的形状有重大影响,主要在病毒半径的20%以内。我们发现托管重子时的光环更为球形。虽然重子的影响取决于光环的质量,但我们也发现了形态学的趋势,表明巴里子的组装方式也与以前的工作一致。我们的发现还表明,圆盘星系在光环中优先形成,其DMO对应物最初是球形的,并且具有更强的速度各向异性。重子的存在改变了光环的DM颗粒的轨道结构,该轨道颗粒显示出速度各向异性的降低,向更切向偏置的轨道。在椎间盘主导的星系的情况下,这种相对降低较弱。我们的结果指出了星系的最终形态与其DM光环的内在特性之间的宇宙学联系,这会因盘的生长而增强。

In this work we aim at investigating the effects of baryons on the dark matter (DM) haloes structure, focusing on the correlation between the presence and importance of stellar discs and the halo shapes. We study the properties of a subsample of DM haloes from Fenix and EAGLE cosmological simulations. We inspect the central regions of haloes in the mass range [10.9 - 992.3] x 10^{10} Msun at z=0, comparing the hydrodynamic runs and their dark matter only (DMo) counterparts. Our results indicate that baryons have a significant impact on the shape of the inner halo, mainly within ~ 20 percent of the virial radius. We find haloes to be more spherical when hosting baryons. While the impact of baryons depends on the mass of the haloes, we also find a trend with morphology which suggests that the way baryons are assembled is also relevant in agreement with previous works. Our findings also indicate that disc galaxies preferentially form in haloes whose DMo counterparts were originally more spherical and with stronger velocity anisotropy. The presence of baryons alter the orbital structure of the DM particles of the haloes, which show a decrease in their velocity anisotropy, towards more tangentially biased orbits. This relative decrease is weaker in the case of disc-dominated galaxies. Our results point out to a cosmological connection between the final morphology of galaxies and the intrinsic properties of their DM haloes, which gets reinforce by the growth of the discs.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源