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Disk Galaxies in the Magneticum Pathfinder Simulations

机译:磁盘星系在距离探测器模拟中

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We present Magneticum Pathfinder, a new set of hydrodynamical cosmological simulations covering a large range of cosmological scales. Among the important physical processes included in the simulations are the chemical and thermodynamical evolution of the diffuse gas as well as the evolution of stars and black holes and the corresponding feedback channels. In the high resolution boxes aimed at studies of galaxy formation and evolution, populations of both disk and spheroidal galaxies are self-consistently reproduced. These galaxy populations match the observed stellar mass function and show the same trends for disks and spheroids in the mass-size relation as observations from the SDSS. Additionally, we demonstrate that the simulated galaxies successfully reproduce the observed specific angular-momentum-mass relations for the two different morphological types of galaxies. In summary, the Magneticum Pathfinder simulations are a valuable tool for studying the assembly of cosmic and galactic structures in the universe.
机译:我们提出了覆盖了大量宇宙学尺度的新型流体动力学宇宙学模拟。在模拟中包括的重要物理过程中包括漫反射气的化学和热力学演变以及恒星和黑洞的演变和相应的反馈通道。在旨在研究Galaxy形成和进化研究的高分辨率箱中,磁盘和球形星系的群体是自我一致的再现。这些星系种群与观察到的恒星质量功能相匹配,并在SDSS的观察结果中显示出质量关系中的磁盘和球状体的相同趋势。另外,我们证明了模拟星系成功地再现了两种不同形态类型的星系的观察到的特定角动量群众关系。总之,距离探测器模拟是一种有价值的工具,用于研究宇宙中宇宙和银座结构的组装。

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