论文标题

椭圆形的椭圆形NGC 1404中的金属周期

The cycle of metals in the infalling elliptical galaxy NGC 1404

论文作者

Mernier, F., Werner, N., Su, Y., Pinto, C., Grossová, R., Simionescu, A., Iodice, E., Sarzi, M., Görgei, A.

论文摘要

遍布星系簇,基团和早期类型星系的热气大气富含金属,在时期期间产生,并通过仍有待确定的过程扩散。尽管这种富集已在簇中进行了常规研究,但较低的质量系统中的金属在探测标准的X射线暴露和光谱法更具挑战性。在本文中,我们专注于非常深的XMM-Newton($ \ sim $ 350 ks)NGC 1404的观察结果,NGC 1404是一个巨大的椭圆形星系,经历了对其炎热气氛的冲压压力,同时朝着Fornax群集的中心插入,目的是通过其热气范围获得丰富的范围。重要的是,我们报告存在一种新的拟合偏见 - “双Fe偏置” - 导致低估了Fe的丰度,而当两个热成分无法现实地模拟银河系外大气中存在的复杂温度结构。与在簇中看到的“金属难题”相反,NGC 1404的Fe和Mg质量的测量值低于恒星和超新星可以合理生产和释放的1-2个数量级。此外,我们注意到星系光环的显着太阳丰度比,与恒星对应物不同,但类似于富簇的ICM的化学组成。完成集群制度,所有这些发现为早期富集的情况提供了更多支持,在两个数量级的质量上都可以。还讨论了一些特殊而有趣的特征,例如可能的双金属峰以及在银河系芯附近的明显增强的SI的明显环。

Hot atmospheres pervading galaxy clusters, groups, and early-type galaxies are rich in metals, produced during epochs and diffused via processes that are still to be determined. While this enrichment has been routinely investigated in clusters, metals in lower mass systems are more challenging to probe with standard X-ray exposures and spectroscopy. In this paper, we focus on very deep XMM-Newton ($\sim$350 ks) observations of NGC 1404, a massive elliptical galaxy experiencing ram-pressure stripping of its hot atmosphere while infalling toward the centre of the Fornax cluster, with the aim to derive abundances through its hot gas extent. Importantly, we report the existence of a new fitting bias - the "double Fe bias" - leading to an underestimate of the Fe abundance when two thermal components cannot realistically model the complex temperature structure present in the outer atmosphere of the galaxy. Contrasting with the ''metal conundrum'' seen in clusters, the Fe and Mg masses of NGC 1404 are measured 1-2 orders of magnitude below what stars and supernovae could have reasonably produced and released. In addition, we note the remarkable Solar abundance ratios of the galaxy's halo, different from its stellar counterpart but similar to the chemical composition of the ICM of rich clusters. Completing the clusters regime, all these findings provide additional support toward a scenario of early enrichment, at play over two orders of magnitude in mass. A few peculiar and intriguing features, such as a possible double metal peak as well as an apparent ring of enhanced Si near the galaxy core, are also discussed.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源