论文标题

联合HST,VLT/MUSE和XMM-NEWTON的观测值限制了两个强镜星系簇的质量分布:Macs J0242.5-2132&Macs J0949.8+1708

Joint HST, VLT/MUSE and XMM-Newton observations to constrain the mass distribution of the two strong lensing galaxy clusters: MACS J0242.5-2132 & MACS J0949.8+1708

论文作者

Allingham, Joseph F. V., Jauzac, Mathilde, Lagattuta, David J., Mahler, Guillaume, Bœhm, Céline, Lewis, Geraint F., Eckert, Dominique, Edge, Alastair, Ettori, Stefano

论文摘要

我们介绍了两个星系簇的强烈镜头分析:Macs J0242.5-2132(Macs J0242,$ Z = 0.313 $)和MacS J0949.8+1708(Macs J0949,$ z = 0.383 $)。由于观察结果与哈勃太空望远镜和缪斯仪器的强大结合,它们的总物质分布受到限制。使用这些观察结果,我们精确地测量了Macs J0242中六个多个图像系统的红移,而在Macs J0949中进行了两个。我们还将四个多个图像系统包括在HST成像中鉴定出的无缪斯红移测量的后一个集群中。对于每个群集,我们的最佳拟合质量模型由单个集群尺度的光环组成,Macs J0242(Macs J0949)的57(170)Galaxy-Scale Halos组成。对于MacS J0242和MacS J0949型号,预测多个图像位置的$ 0.39 ARCSEC和0.15 ARCSEC的多个图像位置。从这些质量模型中,我们得出了$ m(r <$ 200 kpc $)= 1.67 _ { - 0.05}^{+0.03} \ times 10^{14} m _ {\ odot} $,和$ m($ 200 kpc $)= 2.00 _ {0.20}^05555555555555} m _ {\ odot} $。将我们的分析与XMM-Newton天文台的X射线观测结合在一起,我们表明Macs J0242似乎是一个相对放松的群集,而相反,Macs J0949显示了一个轻松的合并后状态。在200 kpc时,X射线观察结果表明,热气体分别为$ f_g = 0.115^{+0.003} _ { - 0.004} $和$ 0.053^{+0.007} _ { - 0.006} _ { - 0.006} $ Macs J0242和MacS J0949。 Macs J0242放松,其密度曲线非常适合NFW分布,与X射线观测一致。最后,对Mac的强镜分析J0949表明核心的平坦暗物质密度分布在10到100 kpc之间。这似乎与X射线观测一致。

We present the strong lensing analysis of two galaxy clusters: MACS J0242.5-2132 (MACS J0242, $z=0.313$) and MACS J0949.8+1708 (MACS J0949, $z=0.383$). Their total matter distributions are constrained thanks to the powerful combination of observations with the Hubble Space Telescope and the MUSE instrument. Using these observations, we precisely measure the redshift of six multiple image systems in MACS J0242, and two in MACS J0949. We also include four multiple image systems in the latter cluster identified in HST imaging without MUSE redshift measurements. For each cluster, our best-fit mass model consists of a single cluster-scale halo, and 57 (170) galaxy-scale halos for MACS J0242 (MACS J0949). Multiple images positions are predicted with a $rms$ 0.39 arcsec and 0.15 arcsec for MACS J0242 and MACS J0949 models respectively. From these mass models, we derive aperture masses of $M(R<$200 kpc$) = 1.67_{-0.05}^{+0.03}\times 10^{14} M_{\odot}$, and $M(R<$200 kpc$) = 2.00_{-0.20}^{+0.05}\times 10^{14} M_{\odot}$. Combining our analysis with X-ray observations from the XMM-Newton Observatory, we show that MACS J0242 appears to be a relatively relaxed cluster, while conversely, MACS J0949 shows a relaxing post-merger state. At 200 kpc, X-ray observations suggest the hot gas fraction to be respectively $f_g = 0.115^{+0.003}_{-0.004}$ and $0.053^{+0.007}_{-0.006}$ for MACS J0242 and MACS J0949. MACS J0242 being relaxed, its density profile is very well fitted by a NFW distribution, in agreement with X-ray observations. Finally, the strong lensing analysis of MACS J0949 suggests a flat dark matter density distribution in the core, between 10 and 100 kpc. This appears consistent with X-ray observations.

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