论文标题
强力重力镜头的高分辨率宇宙学模拟
A high-resolution cosmological simulation of a strong gravitational lens
论文作者
论文摘要
我们提出了使用Galaxy形成的Eagle模型进行的10^13 MSUN星系组及其环境的宇宙流体动力学模拟。利用一种新颖的技术来增加暗物质计算的分辨率,独立于气体的分辨率,模拟解析了质量5x10^6 msun的暗物质光环和次光。因此,它可用于研究在冷暗物质模型强镜头测试中针对的光环和亚李的丰度和特性。我们估计光环和subhalo质量功能,并讨论如何通过在模拟中和环境中包含重子来影响它们。我们发现,在流体动力学模拟中,晕圈和亚呼吸质量函数的振幅比仅在深色物质对应物中的幅度较低。这反映了由于回电和银河风的早期气体损失而导致的流体动力学模拟中光环的生长减少,此外,在亚哈洛群岛的情况下,由于存在大量中央银河系而导致的宿主光环中的潮汐效应增强。光环的分布是高度各向异性的,反映了质量吸积的丝状特征到簇上。结果,与观看方向的结构数量存在显着变化。当在投影中查看时,晕光中心附近的结构中位数减少了两倍。
We present a cosmological hydrodynamical simulation of a 10^13 Msun galaxy group and its environment (out to 10 times the virial radius) carried out using the EAGLE model of galaxy formation. Exploiting a novel technique to increase the resolution of the dark matter calculation independently of that of the gas, the simulation resolves dark matter haloes and subhaloes of mass 5x10^6 Msun . It is therefore useful for studying the abundance and properties of the haloes and subhaloes targeted in strong lensing tests of the cold dark matter model. We estimate the halo and subhalo mass functions and discuss how they are affected both by the inclusion of baryons in the simulation and by the environment. We find that the halo and subhalo mass functions have lower amplitude in the hydrodynamical simulation than in its dark matter only counterpart. This reflects the reduced growth of haloes in the hydrodynamical simulation due to the early loss of gas by reionisation and galactic winds and, additionally, in the case of subhaloes, disruption by enhanced tidal effects within the host halo due to the presence of a massive central galaxy. The distribution of haloes is highly anisotropic reflecting the filamentary character of mass accretion onto the cluster. As a result, there is significant variation in the number of structures with viewing direction. The median number of structures near the centre of the halo, when viewed in projection, is reduced by a factor of two when baryons are included.