论文标题

揭示了喘着粗气的水母Galaxy JO194与Chandra之间的相互作用

Unveiling the interplay between the GASP jellyfish galaxy JO194 and its environment with Chandra

论文作者

Bartolini, Chiara, Ignesti, Alessandro, Gitti, Myriam, Brighenti, Fabrizio, Wolter, Anna, Moretti, Alessia, Vulcani, Benedetta, Poggianti, Bianca M., Gullieuszik, Marco, Fritz, Jacopo, Tomičić, Neven

论文摘要

水母星系的X射线研究打开了簇内培养基(ICM)和星际培养基(ISM)之间相互作用的窗口。在本文中,我们介绍了档案\ textit {chandra}的研究,对喘息的水母星系JO194进行了观察。我们观察到X射线排放从恒星磁盘延伸到休息的螺旋臂,平均温度为$ kt = 0.79 \ pm0.03 $ kev。为了研究X射线发射的起源,我们将观察到的X射线照明与从H $α$发射获得的星形形成速率(SFR)的预期进行了比较。我们估计相对于SF的X射线光度过剩$ \ sim2-4 $,因此我们得出结论,SF并不是JO194扩展X射线发射的主要负责。 The metallicity in the spiral arms ($Z=0.24^{+0.19}_{-0.12} Z_{\odot}$) is consistent with that of the ICM around JO194 ($Z=0.35\pm0.07$), thus we suggest that the ICM radiative cooling dominates the X-ray emission of the arms.我们推测X射线等离子体是由ISM-ICM相互作用引起的,尽管该相互作用的性质仍然未知。最后,我们观察到JO194的X射线特性与其他两个具有不同恒星质量的GASP星系,其托管簇中的相空间条件和局部ICM条件一致。我们建议在剥离开始时建立诱导水母星系中扩展X射线发射所需的条件,并且它们可以长时间尺寸持续,以便在不同的簇中的星系和进化阶段可以呈现相似的扩展X射线发射。

X-ray studies of jellyfish galaxies opened a window in the physics of the interplay between intracluster medium (ICM) and interstellar medium (ISM). In this paper, we present the study of an archival \textit{Chandra} observation of the GASP jellyfish galaxy JO194. We observe X-ray emission extending from the stellar disk to the unwinding spiral arms with an average temperature of $kT=0.79\pm0.03$ keV. To investigate the origin of the X-ray emission, we compare the observed X-ray luminosities with those expected from the star formation rates (SFR) obtained from H$α$ emission. We estimate an X-ray luminosity excess of a factor $\sim2-4$ with respect to the SF, therefore we conclude that SF is not the main responsible for the extended X-ray emission of JO194. The metallicity in the spiral arms ($Z=0.24^{+0.19}_{-0.12} Z_{\odot}$) is consistent with that of the ICM around JO194 ($Z=0.35\pm0.07$), thus we suggest that the ICM radiative cooling dominates the X-ray emission of the arms. We speculate that the X-ray plasma results from the ISM-ICM interplay, although the nature of this interplay is still mostly unknown. Finally, we observe that the X-ray properties of JO194 are consistent with those of two other GASP galaxies with different stellar mass, phase-space conditions in their hosting clusters, and local ICM conditions. We suggest that the conditions required to induce extended X-ray emission in jellyfish galaxies are established at the beginning of the stripping, and they can persist on long time scales so that galaxies in different clusters and evolutionary stages can present similar extended X-ray emission.

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