首次联合 MUSE、哈勃太空望远镜和 JWST 对星团内光线进行分光光度分析:松弛星团 RX J2129.7+0005 案例

Yolanda Jiménez-Teja, Antonio Gimenez-Alcazar, Renato A. Dupke, Patrick Prado-Santos, Jose M. Viĺchez, Nícolas O. L. de Oliveira, Paola Dimauro, Anton M. Koekemoer, Patrick Kelly, Jens Hjorth and Wenlei Chen
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引用次数: 0

摘要

我们展示了迄今为止最详细的单个星团--z∼0.234的弛豫系统RX J2129.7+0005--的星团内光(ICL)光谱。利用哈勃太空望远镜和 JWST 在光学和红外光谱上观测到的 15 幅宽带深度图像,再加上 MUSE 的深度积分场光谱,我们使用 CICLE 算法计算出了跨越光谱范围 ∼0.4-5 μm 的共 3696 幅 ICL 图。我们使用参数和非参数方法拟合了ICL的光谱能量分布,并推断出其物理特性,根据CIGALE和Prospector的结果,得出恒星质量在11.5到12.7之间,平均年龄在9.7到10.5 Gyr之间。这意味着RX J2129.7+0005中的ICL平均年龄比受干扰星团的ICL要大,表明不同恒星群对ICL的贡献取决于星团的动力学状态。结合对热气体分布的X射线观测,我们证实了RX J2129.7+0005的松弛状态,它在与一个高质量比卫星进行最后一次大合并后,显示出明显的荡涤迹象,而这一合并可能发生在6.6亿年前,在一个相对径向的轨道上。ICL中存在的子结构,如壳、不同密度和一定程度盒状的云以及一个团块,都支持这种假设。
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First Joint MUSE, Hubble Space Telescope, and JWST Spectrophotometric Analysis of the Intracluster Light: The Case of the Relaxed Cluster RX J2129.7+0005
We present the most detailed spectrum of intracluster light (ICL) in an individual cluster to date, the relaxed system RX J2129.7+0005, at z ∼ 0.234. Using 15 broadband, deep images observed with the Hubble Space Telescope and JWST in the optical and the infrared, plus deep integral field spectroscopy from MUSE, we computed a total of 3696 ICL maps spanning the spectral range ∼0.4−5 μm with our algorithm CICLE, a method that is extremely well suited to analyzing large samples of data in a fully automated way. We used both parametric and nonparametric approaches to fit the spectral energy distribution of the ICL and infer its physical properties, yielding a stellar mass between 11.5 and 12.7 and an average age between 9.7 and 10.5 Gyr, from CIGALE and Prospector results. This implies that the ICL in RX J2129.7+0005 is, on average, older than that of disturbed clusters, suggesting that the contribution from different stellar populations to the ICL is at play depending on the cluster’s dynamical state. Coupled with X-ray observations of the hot gas distribution, we confirm the relaxed state of RX J2129.7+0005, showing clear signs of sloshing after a last major merger with a high-mass-ratio satellite that could have happened ∼6.6 Gyr ago in a relatively radial orbit. The presence of substructure in the ICL, such as shells, clouds with different densities and a certain degree of boxyness, and a clump, supports this scenario.
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