论文标题

星系形成的联合星系 - 半镜头镜头和聚类约束

Joint galaxy-galaxy lensing and clustering constraints on galaxy formation

论文作者

Renneby, Malin, Henriques, Bruno M. B., Hilbert, Stefan, Nelson, Dylan, Vogelsberger, Mark, Angulo, Raúl E., Springel, Volker, Hernquist, Lars

论文摘要

我们比较了Henriques等人的Galaxy-Galaxy镜头曲线和聚类的预测。 (2015)慕尼黑半分析的星系组(SAM)和Illainistng Suite(主要是TNG300)的公共版本,其观察到了儿童+GAMA和SDSS-DR7的观察,使用了四个不同的镜头选择功能(Stellar Mass,Stellar Mass,Stellar Mass,Stellar Mass and Complocement,Stellar Mass和Seltar Mose和Seltelar Mass and Extellar Mass Criteria Mass and Colortelar sertellar sertellar ass and colorte)。我们发现,此版本的SAM与$ M_ \ ast> 10^{11} \,M_ \ ODOT $的最新数据不太吻合。通过降低卫星星系的合并时间以及降低SAM中的无线电模式AGN积聚效率,我们可以在高质量端获得更好的一致性,无论是镜头还是聚类的一致性。我们表明,新模型与Velliscig等人中提出的中央星系的信号一致。 (2017)。转向流体动力学模拟,TNG300产生了良好的镜头预测,既适用于恒星质量($χ^2 = 1.81 $),而SAM为$χ^2 = 7.79 $),当地最亮的星系样品($χ^2 = 3.80 $,相比$χ^2 = 5.01 = 5.01 $)。随着颜色添加灰尘校正,它与红色低质量星系的SDSS聚类信号匹配。我们发现,SAMS和TNG300都可以预测$ \ sim 50 \,\%$,用于中间质量红色星系,$ 10.2 <\ log_ {10} m_ \ ast [m_ \ odot] <11.2 $ <11.2 $ at $ r \ r \ y \ r \ y \,h^,h^{ - h^{ - h^{ - h^{ - h. 发展。

We compare predictions for galaxy-galaxy lensing profiles and clustering from the Henriques et al. (2015) public version of the Munich semi-analytical model of galaxy formation (SAM) and the IllustrisTNG suite, primarily TNG300, with observations from KiDS+GAMA and SDSS-DR7 using four different selection functions for the lenses (stellar mass, stellar mass and group membership, stellar mass and isolation criteria, stellar mass and colour). We find that this version of the SAM does not agree well with the current data for stellar mass-only lenses with $M_\ast > 10^{11}\,M_\odot$. By decreasing the merger time for satellite galaxies as well as reducing the radio-mode AGN accretion efficiency in the SAM, we obtain better agreement, both for the lensing and the clustering, at the high mass end. We show that the new model is consistent with the signals for central galaxies presented in Velliscig et al. (2017). Turning to the hydrodynamical simulation, TNG300 produces good lensing predictions, both for stellar mass-only ($χ^2 = 1.81$ compared to $χ^2 = 7.79$ for the SAM), and locally brightest galaxies samples ($χ^2 = 3.80$ compared to $χ^2 = 5.01$). With added dust corrections to the colours it matches the SDSS clustering signal well for red low mass galaxies. We find that both the SAMs and TNG300 predict $\sim 50\,\%$ excessive lensing signals for intermediate mass red galaxies with $10.2 < \log_{10} M_\ast [ M_\odot ] < 11.2$ at $r \approx 0.6\,h^{-1}\,\mathrm{Mpc}$, which require further theoretical development.

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