论文标题

HST和HSC弱透镜研究的相等质量分离合并CIZA J0107.7+5408

HST and HSC Weak-lensing Study of the Equal-mass Dissociative Merger CIZA J0107.7+5408

论文作者

Finner, Kyle, Randall, Scott W., Jee, M. James, Blanton, Elizabeth L., Cho, Hyejeon, Clarke, Tracy E., Giacintucci, Simona, Nulsen, Paul, van Weeren, Reinout

论文摘要

RAM压力和重力的相互作用形成了解离的合并,这可能导致最近相撞的子分类器的暗物质和重型成分的空间位移。 CIZA J0107.7+5408是附近(Z = 0.105)的分离合并,可容纳两个X射线亮度峰和双峰星系分布。分析MMT/hectospec观测值,我们研究了星系星系的视线和空间分布。利用深,高分辨率的哈勃空间望远镜高级相机来调查成像和大型视野Subaru Hyper-Suprime-Cam观测值,我们对CIZA J0107.7+5408进行了弱透镜分析。我们的弱透明分析检测到与簇星系相一致的双峰质量分布,但与X射线亮度峰显着偏移。将两个NFW光晕拟合到镜头信号中,我们找到了$ m_ {200,ne} = 2.8^{+1.1} _ { - 1.1} \ times10^{14} $ _ \ m $ _ \ odot $ and and odot $ and and and and and and和$ m_ {200,sw} = 3.1^{+1.2} _ { - 1.2} \ times10^{14} $ m $ _ \ odot $。此外,子级别的质量比率,$(m/l)_ {ne} = 571^{+89} _ { - 91} $ $ $ m_ \ odot/l _ {\ odot,b} $ m_ \ odot/l _ {\ odot,b} $彼此彼此一致,并且在Galaxy簇的质量与光比的范围内。

A dissociative merger is formed by the interplay of ram pressure and gravitational forces, which can lead to a spatial displacement of the dark matter and baryonic components of the recently collided subclusters. CIZA J0107.7+5408 is a nearby (z=0.105) dissociative merger that hosts two X-ray brightness peaks and a bimodal galaxy distribution. Analyzing MMT/Hectospec observations, we investigate the line-of-sight and spatial distribution of cluster galaxies. Utilizing deep, high-resolution Hubble Space Telescope Advanced Camera for Surveys imaging and large field-of-view Subaru Hyper-Suprime-Cam observations, we perform a weak-lensing analysis of CIZA J0107.7+5408. Our weak-lensing analysis detects a bimodal mass distribution that is spatially consistent with the cluster galaxies but significantly offset from the X-ray brightness peaks. Fitting two NFW halos to the lensing signal, we find an equal-mass merger with subcluster masses of $M_{200,NE}=2.8^{+1.1}_{-1.1}\times10^{14}$ M$_\odot$ and $M_{200,SW}=3.1^{+1.2}_{-1.2}\times10^{14}$ M$_\odot$. Moreover, the mass-to-light ratios of the subclusters, $(M/L)_{NE}=571^{+89}_{-91}$ $M_\odot/L_{\odot,B}$ and $(M/L)_{SW}=564^{+87}_{-89}$ $M_\odot/L_{\odot,B}$, are found to be consistent with each other and within the range of mass-to-light ratios found for galaxy clusters.

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