论文标题
JWST的第一个Galaxy群集镜头SMACS J0723.3-7327的X射线分析
X-ray analysis of JWST's first galaxy cluster lens SMACS J0723.3-7327
论文作者
论文摘要
SMACS〜J0723.3-7327是JWST观察到的第一个星系簇镜头。基于JWST的ERO数据,几个小组报告了该群集的强透镜分析和质量分布的结果。但是,受JWST数据的角度覆盖范围的限制,强镜模型仅覆盖中央区域。对热ICM的X射线分析对于在此非常大的群集中的质量分布中获得更完整的限制是必要的。在这项工作中,我们旨在对J0723进行全面的X射线分析,以使用SRG/Erosita和Chandra X射线观测器的X射线数据获得准确的ICM静水压质量测量。通过将静液压质量谱与强镜模型进行比较,我们旨在为质量分布提供最可靠的限制,高达R500。由于分别提供高S/N和高角度分辨率的Allsky All-Sky调查和Chandra数据,我们能够以核心和郊区的精度来限制ICM气体密度和温度曲线。使用密度和温度曲线,我们计算静液压质量谱,然后沿视线投射出来,以与基于JWST数据的最新强透镜分析获得的质量分布进行比较。我们还使用我们在这项工作中获得的静静力质量谱分配了强透镜质量分布。从Erosita和Chandra获得的X射线结果彼此相同。我们在这项工作中测量的静水质量谱图(预测和去除)与所有RADII基于JWST数据的最新强镜结果非常吻合。我们还发现,J0723中的径向加速度关系与螺旋星系的RAR不一致,这意味着后者不是所有质量尺度上的重力的普遍特性。
SMACS~J0723.3-7327 is the first galaxy cluster lens observed by JWST. Based on the ERO data from JWST, several groups have reported the results on strong lensing analysis and mass distribution of this cluster. However, limited by the angular coverage of the JWST data, the strong lensing models only cover the central region. X-ray analysis on the hot ICM is necessary to obtain a more complete constraint on the mass distribution in this very massive cluster. In this work, we aim to perform a comprehensive X-ray analysis of J0723 to obtain accurate ICM hydrostatic mass measurements, using the X-ray data from SRG/eROSITA and Chandra X-ray observatories. By comparing the hydrostatic mass profile with the strong lensing model, we aim to provide the most reliable constraint on the distribution of mass up to R500. Thanks to the eROSITA all-sky survey and Chandra data, which provide high S/N and high angular resolution respectively, we are able to constrain the ICM gas density profile and temperature profile with good accuracy both in the core and to the outskirts. With the density and temperature profiles, we compute the hydrostatic mass profile, which is then projected along the line of sight to compare with the mass distribution obtained from the recent strong lensing analysis based on JWST data. We also deproject the strong lensing mass distribution using the hydrostatic mass profile we obtained in this work. The X-ray results obtained from eROSITA and Chandra agree very well with each other. The hydrostatic mass profiles we measured in this work, both projected and deprojected, are in good agreement with recent strong lensing results based on JWST data, at all radii. We also find that the radial acceleration relation in J0723 is inconsistent with the RAR for spiral galaxies, implying that the latter is not a universal property of gravity across all mass scales.