论文标题

三百个项目:通过Zernike多项式对星系形态和动力状态的群体的追求

The Three Hundred Project: quest of clusters of galaxies morphology and dynamical state through Zernike Polynomials

论文作者

Capalbo, Valentina, De Petris, Marco, De Luca, Federico, Cui, Weiguang, Yepes, Gustavo, Knebe, Alexander, Rasia, Elena

论文摘要

当将这些对象的观察数据应用于宇宙学研究中时,对星系簇的动力状态的了解可以减轻系统学。已经很好地研究了国家与集群形态之间相关性的证据。可以通过X射线带中的表面亮度和Sunyaev-Zel'Dovich(TSZ)效应在毫米范围内的热分量的图像来推断形态。为此,我们首次应用Zernike多项式分解,这是一种常用的分析方法,主要用于自适应光学器件,以恢复望远镜学生平面上的异常辐射波前。以这种新颖的方式,我们期望正确推断簇的形态以及它们的动态状态。为了验证这种新方法的可靠性,我们使用的是300多个在不同红移的项目中选择的300多个合成集群,范围从0到1.03。用compton参数量化的TSZ的模拟地图,$ y $ - 映射,用$ r_ {500} $内的zernike多项式建模,群集参考半径。我们验证可以通过估计不同多项式对地图拟合的贡献来区分每个群集的形态。这种新方法的结果与在同一目录上进行的先前分析的结果相关,使用两个参数结合了形态学或动态状态探针。我们强调了地图的仪器角度分辨率主要是在将这种方法扩展到高红移簇时的影响。

The knowledge of the dynamical state of galaxy clusters allows to alleviate systematics when observational data from these objects are applied in cosmological studies. Evidence of correlation between the state and the morphology of the clusters is well studied. The morphology can be inferred by images of the surface brightness in the X-ray band and of the thermal component of the Sunyaev-Zel'dovich (tSZ) effect in the millimetre range. For this purpose, we apply, for the first time, the Zernike polynomial decomposition, a common analytic approach mostly used in adaptive optics to recover aberrated radiation wavefronts at the telescopes pupil plane. With this novel way we expect to correctly infer the morphology of clusters and so possibly, their dynamical state. To verify the reliability of this new approach we use more than 300 synthetic clusters selected in THE THREE HUNDRED project at different redshifts ranging from 0 up to 1.03. Mock maps of the tSZ, quantified with the Compton parameter, $y$-maps, are modelled with Zernike polynomials inside $R_{500}$, the cluster reference radius. We verify that it is possible to discriminate the morphology of each cluster by estimating the contribution of the different polynomials to the fit of the map. The results of this new method are correlated with those of a previous analysis made on the same catalogue, using two parameters that combine either morphological or dynamical-state probes. We underline that instrumental angular resolution of the maps has an impact mainly when we extend this approach to high-redshift clusters.

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