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A Multiscale Approach to Environment

机译:一种多尺度的环境方法

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Physical processes influencing the properties of galaxies can be traced by the depen-dence and evolution of galaxy properties on their environment. A detailed understanding of this dependence can only be gained through comparison of observations with models, with an appropriate quantification of the rich parameter space describing the environment of the galaxy. We present a new, multiscale parameterization of galaxy environment which retains an observationally moti-vated simplicity whilst utilizing the information present on different scales. We examine how the distribution of galaxy (u-r) colours in the Sloan Digital Sky Survey (SDSS), parameterized using a double gaussian (red plus blue peak) fit, depends upon multiscale density. This allows us to probe the detailed dependence of galaxy properties on environment in a way which is independent of the halo model. Nonetheless, cross-correlation with the group catalogue constructed by Yang et al, 2007 shows that galaxy properties trace environment on different scales in a way which mimics that expected within the halo model. This provides independent support for the existence of virialized haloes, and important additional clues to the role played by environment in the evolution of the galaxy population. This work is described in full by Wilman et al, 2010, MNRAS, in press.
机译:影响星系特性的物理过程可以通过对其环境的沉积性和Galaxy性能的依赖性和演化来追踪。只有通过与模型的观察相比只能获得对这种依赖的详细了解,其具有适当量化描述银河系环境的富参数空间。我们展示了Galaxy环境的新多尺度参数化,其利用不同尺度上的信息保留了一个伐木运动的简单性。我们研究了使用双高斯(红色加蓝色峰值)配合的Sloan数字天空测量(SDSS)中Galaxy(U-R)颜色的分布方式如何依赖于多尺度密度。这使我们能够以独立于光环模型的方式探测Galaxy属性对环境的详细依赖性。尽管如此,与Yang等人,2007所构建的组目录的互相关显示,Galaxy属性以不同尺度的方式追踪环境,其模仿预期的光晕模型。这提供了独立支持,对存在的卤化卤化物的存在,以及在银河系的演变中的环境中发挥作用的重要附加线索。这项工作填写了Wilman等,2010,MNRAS,在新闻界中填写。

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