论文标题

Brane World I:概述和第一个结果

Galaxy formation in the brane world I: overview and first results

论文作者

Hernández-Aguayo, César, Arnold, Christian, Li, Baojiu, Baugh, Carlton M.

论文摘要

我们使用{\ sc arepo}代码和Illustrististng Galaxy形成模型的新修改版本使用新的修改版本进行了``正常分支dvali-gabadadze-porrati(NDGP)Braneworld模型进行星系形成的流体动力学模拟。 We simulate two nDGP models (N5 and N1) which represent, respectively, weak and moderate departures from GR, in boxes of sizes $62\,h^{-1}{\rm Mpc}$ and $25\,h^{-1}{\rm Mpc}$ using $2\times512^3$ dark matter particles and initial gas cells.这使我们能够第一次探索重力重力模型中,重力物理学对银河系尺度的影响,并在这些模型中通过宇宙时间对暗物质光环和星系演化的出色含量进行预测。我们发现在功率谱中的GR和NDGP模型之间的显着差异以及气体,恒星和暗物质的相关函数在大尺度上最多为$ \ sim 25 $。与它们在标准宇宙学模型($λ$ CDM)中的影响类似,重型效应可能会对整体物质分布的聚类产生重大影响,其标志取决于规模。在研究这些模型中的重力和银河反馈之间的堕落性时,我们发现这两个对物质聚类的物理效应可以清晰地分解,从而可以准确地预测具有带有男性效应的物质功率谱,而无需运行流体动力学模拟。根据Braneworld模型,我们发现与高达$ \ sim15 $ $ \ sim15 $的GR相比,诸如恒星与半质量的比率,星系出色的质量质量功能,气体分数和星形组成速率密度的差异。在光环的内部内部存在重子,第五力的幅度降低了,但是这种减少迅速在$ \ sim0.1 $ times halo Radius以上可忽略不计。

We carry out ``full-physics'' hydrodynamical simulations of galaxy formation in the normal-branch Dvali-Gabadadze-Porrati (nDGP) braneworld model using a new modified version of the {\sc Arepo} code and the IllustrisTNG galaxy formation model. We simulate two nDGP models (N5 and N1) which represent, respectively, weak and moderate departures from GR, in boxes of sizes $62\,h^{-1}{\rm Mpc}$ and $25\,h^{-1}{\rm Mpc}$ using $2\times512^3$ dark matter particles and initial gas cells. This allows us to explore, for the first time, the impact of baryonic physics on galactic scales in braneworld models of modified gravity and to make predictions on the stellar content of dark matter haloes and galaxy evolution through cosmic time in these models. We find significant differences between the GR and nDGP models in the power spectra and correlation functions of gas, stars and dark matter of up to $\sim 25$ per cent on large scales. Similar to their impact in the standard cosmological model ($Λ$CDM), baryonic effects can have a significant influence over the clustering of the overall matter distribution, with a sign that depends on scale. Studying the degeneracy between modified gravity and galactic feedback in these models, we find that these two physical effects on matter clustering can be cleanly disentangled, allowing for a method to accurately predict the matter power spectrum with baryonic effects included, without having to run hydrodynamical simulations. Depending on the braneworld model, we find differences compared with GR of up to $\sim15$ per cent in galaxy properties such as the stellar-to-halo-mass ratio, galaxy stellar mass function, gas fraction and star formation rate density. The amplitude of the fifth force is reduced by the presence of baryons in the very inner part of haloes, but this reduction quickly becomes negligible above $\sim0.1$ times the halo radius.

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