论文标题

在本地宇宙中发现紧凑型椭圆形的双峰环境分布

Discovery of a Bimodal Environmental Distribution of Compact Ellipticals in the Local Universe

论文作者

Chen, Guangwen, Zhang, Hong-Xin, Kong, Xu, Lin, Zesen, Liang, Zhixiong, Chen, Zuyi, Tang, Yimeng, Chen, Xinkai

论文摘要

低质量紧凑型恒星系统(CSSS; $ M _ {\ Star} $ <$ <$ 10 $^{10} $ M $ _ {\ odot} $)被认为是具有各种构造机制的混合物品。先前对CSS的调查偏向相对较高的密度环境,无法完全了解CSS形成的环境依赖性。我们在$ \ sim $ \ sim $ \ sim $ \ sim $ 200度$^{2} $上进行了附近静态CSSS的第一个无偏见有限的人口普查。完整的样本包括82个静止的CSS,其中85%属于经典紧凑型椭圆形(CES)的恒星质量范围。一个组的峰值接近$ \ sim $ 0.1 $ \ times $$ r _ {\ rm vir} $(卫星),另一个峰值接近$ \ sim $ \ sim $ 10 $ \ times $$ r _ {\ rm vir} $(field)。与CSS相比,类似质量的普通静态星系具有单峰$ d/r _ {\ rm vir} $分布。\卫星CSSS年龄较大,比平均野外CSS更旧。双峰$ d/r _ {\ rm vir} $静止CSSS的分布加强了CES的存在两个不同的地层渠道(潮汐剥离和潮汐剥离和即将来临),并且可以在两个相互包容的角度中理解,即在两个相互包容的观点,即仅在卫星上的较高的潮汐阶段,他们在卫星上的近距离出现了多大的跨越的托管,他们的卫星既既多样又有众多的群体,并且是在卫星上的近距离托管,并且是在卫星上的近距离观察,并且是在卫星上的近距离观察,并且在卫星上的近距离出现了众多的观点。 Subhalos接近巨大的光晕。

Low-mass compact stellar systems (CSSs; $M_{\star}$ $<$ 10$^{10}$ M$_{\odot}$) are thought to be a mixed bag of objects with various formation mechanisms. Previous surveys of CSSs were biased to relatively high-density environments and cannot provide a complete view of the environmental dependence of the formation of CSSs. We conduct the first-ever unbiased flux-limited census of nearby quiescent CSSs over a total sky area of $\sim$ 200 deg$^{2}$ observed by the GAMA spectroscopic survey. The complete sample includes 82 quiescent CSSs, of which 85\% fall within the stellar mass range of classical compact ellipticals (cEs).\ By quantifying the local environment with the normalized projected distance $D/R_{\rm vir}$ to the nearest luminous neighboring galaxy, we find that these CSSs have a bimodal $D/R_{\rm vir}$ distribution, with one group peaking near $\sim$ 0.1$\times$$R_{\rm vir}$ (satellite) and the other peaking near $\sim$ 10$\times$$R_{\rm vir}$ (field). In contrast to the CSSs, ordinary quiescent galaxies of similar masses have unimodal $D/R_{\rm vir}$ distribution.\ Satellite CSSs are older and more metal-rich than field CSSs on average. The bimodal $D/R_{\rm vir}$ distribution of quiescent CSSs reinforces the existence of two distinct formation channels (tidal stripping and born-to-be) for cEs and may be understood in two mutually inclusive perspectives, i.e., substantial tidal stripping happens only when satellite galaxies travel sufficiently close to their massive hosts, and there exists an excess of high-density cE-bearing subhalos close to massive halos.

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