Reconstructing the merger history of the A3266 galaxy cluster

被引:23
作者
Henriksen, M
Donnelly, RH
Davis, DS
机构
[1] Univ Maryland, Dept Phys, Baltimore, MD 21250 USA
[2] Harvard Smithsonian Astrophys Observ, Cambridge, MA 02116 USA
[3] MIT, Cambridge, MA 02116 USA
基金
美国国家科学基金会;
关键词
galaxies : clusters : individual (Abell 3266); galaxies : interactions; galaxies : kinematics and dynamics; intergalactic medium; X-rays : galaxies;
D O I
10.1086/308295
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
A temperature map of the A3266 galaxy cluster has been derived from the ASCA gas imaging spectrometer observations. It shows an asymmetric pattern of heating indicative of an ongoing merger between a group-sized subcluster and the main cluster. The galaxy distribution shows two peaks connected in a barlike structure running northeast to southwest through the central region of the main cluster, defining the merger axis. The temperature of the intergalactic medium generally decreases from southwest to northeast along the merger axis with a peak of 13.2(-2.0)(+3.4) keV in a region which is perpendicular to the merger axis and extends through the main cluster density peak. The central bar has a velocity dispersion of similar to 1300 km s(-1), compared to similar to 1000 km s(-1) for the surrounding cluster. The central bar also has two distinct density peaks in the distribution of galaxies, yet it has a velocity distribution which is consistent with a single Gaussian. This implies a merger in the plane of the sky. The optical and X-ray data taken together show that a loose group of similar to 30 galaxies has penetrated the main cluster from the southwest, decoupling from their original intergroup medium and passing through a strong shock front. Two radio galaxies, one a wide angle tail (WAT) morphology and the other a narrow angle tail (NAT), are located to the southwest of the main cluster in the postshock gas. Since the merger is in the plane of the sky, a dynamical analysis cannot be applied to derive the velocity of the merger. Alternatively, using the pre- and postshock gas temperature and assuming an adiabatic shock, we calculate a relative gas velocity of similar to 1400 km s(-1). The alignment of the NAT and WAT relative to the shock front combined with the high gas velocity from the merger implies that the observed radio morphologies formed via ram pressure as a result of the merger.
引用
收藏
页码:692 / 697
页数:6
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