论文标题

Hestia模拟中本地集体气体和星系的运动学

Kinematics of the Local Group gas and galaxies in the Hestia simulations

论文作者

Biaus, Luis, Nuza, Sebastián E., Richter, Philipp, Sparre, Martin, Scannapieco, Cecilia, Damle, Mitali, Sorce, Jenny G., Grand, Robert J. J., Tempel, Elmo, Libeskind, Noam I., Hani, Maan H.

论文摘要

我们使用{\ sc hestia}(直接区域的高分辨率环境模拟)协作进行的高分辨率模拟研究了本地组(LG)中气体和星系的运动学特性。我们的模拟包括围绕LG样区域的正确宇宙学,由两个$ \ sim 10^{12} $ 〜M $ $ _ \ odot $的主要螺旋星系组成,它们的卫星和较小的孤立星系,它们都在几个MPC的体积中共享相同的大型运动。从太阳的角度来看,我们表征了模拟LGS中的气体和星系运动学,以与最近的HST/COS吸收线观测值和LG Galaxy数据相比,与观察到的趋势进行了比较。为了分析观测数据中看到的LG气体和星系的速度模式,我们从当地的休息标准以及银河系和本地组的Barycentre框架中构建了天空图。我们的发现表明,在首选的Barycentre方向附近,在低/高纬度地区建立了径向速度偶极子,这是在两个主要的LG Galaxies接近时拆下星系旋转后的材料{\ It exourter forefter {\ It forefter}的模拟运动学的自然结果。我们的结果有利于一种场景,即气体和星系朝着LG Barycentre流,产生类似于观测的速度偶极子。尽管我们的研究以定性方式显示了LG中的全球物质运动学作为其正在进行的组装的一部分,但LG气体气体速率和LG气体物理条件的定量估计必须等待对电离条件进行更详细的建模,这将在随访文件中介绍。

We investigate the kinematic properties of gas and galaxies in the Local Group (LG) using high-resolution simulations performed by the {\sc Hestia} (High-resolution Environmental Simulations of The Immediate Area) collaboration. Our simulations include the correct cosmography surrounding LG-like regions consisting of two main spiral galaxies of $\sim 10^{12}$~M$_\odot$, their satellites and minor isolated galaxies, all sharing the same large-scale motion within a volume of a few Mpc. We characterise the gas and galaxy kinematics within the simulated LGs, from the perspective of the Sun, to compare with observed trends from recent HST/COS absorption-line observations and LG galaxy data. To analyse the velocity pattern of LG gas and galaxies seen in the observational data, we build sky maps from the local standard of rest, and the galactic and local group barycentre frames. Our findings show that the establishment of a radial velocity dipole at low/high latitudes, near the preferred barycentre direction, is a natural outcome of simulation kinematics for material {\it outside} the Milky Way virial radius after removing galaxy rotation when the two main LG galaxies are approaching. Our results favour a scenario where gas and galaxies stream towards the LG barycentre producing a velocity dipole resembling observations. While our study shows in a qualitative way the global matter kinematics in the LG as part of its on-going assembly, quantitative estimates of gas-flow rates and physical conditions of the LG gas have to await a more detailed modeling of the ionization conditions, which will be presented in a follow-up paper.

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