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BOSS Great Wall: morphology, luminosity, and mass

机译:BOSS长城:形态,亮度和质量

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Context. Galaxy superclusters are the largest systems in the Universe that can give us information about the formation and evolution of the cosmic web. Aims. We study the morphology of the superclusters from the BOSS Great Wall (BGW), a recently discovered very rich supercluster complex at the redshift z = 0.47 . Methods. We have employed the Minkowski functionals to quantify supercluster morphology. We calculate supercluster luminosities and masses using two methods. Firstly, we used data about the luminosities and stellar masses of high stellar mass galaxies with log?( M _(?)/ h ~(-1) M _(⊙)) ≥ 11.3 . Secondly, we applied a scaling relation that combines morphological and physical parameters of superclusters to obtain supercluster luminosities, and obtained supercluster masses using the mass-to-light ratios found for local rich superclusters. Results. The BGW superclusters are very elongated systems, with shape parameter values of less than 0.2 . This value is lower than that found for the most elongated local superclusters. The values of the fourth Minkowski functional V _(3) for the richer BGW superclusters ( V _(3) = 7 and 10 ) show that they have a complicated and rich inner structure. We identify two Planck SZ clusters in the BGW superclusters, one in the richest BGW supercluster, and another in one of the poor BGW superclusters. The luminosities of the BGW superclusters are in the range of 1?8 × 10~(13) h ~(-2) L _(⊙) , and masses in the range of 0.4?2.1 × 10~(16) h ~(-1) M _(⊙) . Supercluster luminosities and masses obtained with two methods agree well. Conclusions. The BGW is a complex of massive, luminous and large superclusters with very elongated shape. The search and detailed study, including the morphology analysis of the richest superclusters and their complexes from observations and simulations can help us to understand formation and evolution of the cosmic web.
机译:上下文。银河超级集群是宇宙中最大的系统,可以为我们提供有关宇宙网形成和演化的信息。目的我们研究了来自BOSS长城(BGW)的超级团簇的形态,该团簇是红移z = 0.47时最近发现的非常丰富的超级团簇复合体。方法。我们采用了Minkowski功能来量化超集群形态。我们使用两种方法计算超集群的光度和质量。首先,我们使用log≥(M _(?)/ h〜(-1)M _(⊙))≥11.3的高恒星质量星系的光度和恒星质量数据。其次,我们应用了比例关系,该比例关系结合了超级团簇的形态和物理参数以获得超团簇的光度,并使用局部富超级团簇的质光比获得了超团簇的质量。结果。 BGW超级群集是非常细长的系统,形状参数值小于0.2。该值低于大多数拉长的本地超级集群的值。较丰富的BGW超级簇(V _(3)= 7和10)的第四Minkowski泛函V _(3)的值表明它们具有复杂而丰富的内部结构。我们在BGW超级集群中确定了两个普朗克SZ集群,一个在最富裕的BGW超级集群中,另一个在较差的BGW超级集群中。 BGW超级簇的发光度在1?8×10〜(13)h〜(-2)L _(⊙)范围内,质量在0.4?2.1×10〜(16)h〜( -1)M _(⊙)。两种方法获得的超簇发光度和质量非常吻合。结论。 BGW由大量,发光和大型的超级簇组成,形状非常细长。搜索和详细研究,包括通过观察和模拟对最丰富的超级团簇及其复合体进行形态分析,可以帮助我们了解宇宙网的形成和演化。

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