论文标题

来自黑暗的光:通过log-gaussian cox工艺检测到珀尔修斯群集中的超湿星系

Light from the Darkness: Detecting Ultra-Diffuse Galaxies in the Perseus Cluster through Over-densities of Globular Clusters with a Log-Gaussian Cox Process

论文作者

Li, Dayi, Eadie, Gwendolyn M., Abraham, Roberto G., Brown, Patrick E., Harris, William E., Janssens, Steven R., Romanowsky, Aaron J., van Dokkum, Pieter, Danieli, Shany

论文摘要

我们引入了一种新方法来检测超湿星系,通过搜索造型球体间球体簇种群中的过度密度。我们的方法是基于对数高斯Cox过程的应用,该过程是空间统计文献中常用的模型,但很少在天文学中使用。此方法应用于从Piper调查获得的球状群集数据,A \ TextIt {Hubble Space望远镜}针对Perseus群集的成像程序。在调查中,我们成功地检测到所有确认的超扩散星系,并具有已知的球形簇种群。我们还确定了未检测到的弥漫性恒星含量的潜在星系。初步分析表明,它不太可能仅仅是一个意外的球形簇或其他物体的团块。如果得到确认,该系统将是同类系统中的第一个。模拟用于评估超扩散星系中球状簇系统的物理参数如何使用我们的方法影响其可检测性。我们将检测概率与星系中球状簇的总数和抗相关性的总数量化,并随着球状簇系统的半径半径的增加而量化了抗相关性。球状簇分布的Sérsic指数对可检测性几乎没有影响。

We introduce a new method for detecting ultra-diffuse galaxies by searching for over-densities in intergalactic globular cluster populations. Our approach is based on an application of the log-Gaussian Cox process, which is a commonly used model in the spatial statistics literature but rarely used in astronomy. This method is applied to the globular cluster data obtained from the PIPER survey, a \textit{Hubble Space Telescope} imaging program targeting the Perseus cluster. We successfully detect all confirmed ultra-diffuse galaxies with known globular cluster populations in the survey. We also identify a potential galaxy that has no detected diffuse stellar content. Preliminary analysis shows that it is unlikely to be merely an accidental clump of globular clusters or other objects. If confirmed, this system would be the first of its kind. Simulations are used to assess how the physical parameters of the globular cluster systems within ultra-diffuse galaxies affect their detectability using our method. We quantify the correlation of the detection probability with the total number of globular clusters in the galaxy and the anti-correlation with increasing half-number radius of the globular cluster system. The Sérsic index of the globular cluster distribution has little impact on detectability.

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