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首页> 外文期刊>The Astrophysical journal >X-RAY CONSTRAINTS ON GALAXY-GAS-JET INTERACTIONS IN THE DUMBBELL GALAXIES NGC 4782 AND NGC 4783 IN THE LGG 316 GALAXY GROUP
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X-RAY CONSTRAINTS ON GALAXY-GAS-JET INTERACTIONS IN THE DUMBBELL GALAXIES NGC 4782 AND NGC 4783 IN THE LGG 316 GALAXY GROUP

机译:LGG 316银河系中Dumbbell星系NGC 4782和NGC 4783中的X射线约束星系-气体-射流相互作用。

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摘要

We present results from a 49.3 ks Chandra X-ray observation of the strongly interacting dumbbell galaxies NGC 4782 (3C 278) and NGC 4783 that constrain the kinematics of the interaction and models for bending the radio jets associated with NGC 4782. The galaxies are embedded in an approximately spherical distribution of group gas, centered on NGC 4782, that, away from the interaction region, is nearly isothermal with mean temperature kT ~ 1.4 ± 0.4 keV. The X-ray morphology suggests that NGC 4783 is infalling into a single, massive galaxy group (LGG 316) with NGC 4782 nearly at rest at the center of the group potential. NGC 4783 shows a sharp X-ray surface brightness edge (cold front) to the east and a ~ 15 kpc ram pressure-stripped tail to the west. Analysis of this cold front indicates that NGC 4783 is moving east with a total velocity 870_(-400)~(+270) km s~(-1) (Mach 1.4_(-0.7)~(+0.5) at an inclination angle 46° (> 33°) toward us with respect to the plane of the sky. A ~ 45 Myr old X-ray cavity, with enthalpy of 4.4 × 10~(57) ergs, coincides with the eastern radio lobe of 3C 278. X-ray knots are found on both the radio jet and counterjet, coincident with peaks in the radio emission. If we assume a light, mildly relativistic jet in 3C 278, then ram pressure velocities of 100-200 km s~(-1) impacting the eastern jet and ~ 170 km s~(-1) acting on the western radio lobe are sufficient to produce their observed bending. These velocities may be caused by bulk motions of the surrounding gas induced by the high-velocity interaction between the galaxies, by the motion of the host galaxy NGC 4782 relative to the IGM, or by a combination of these processes.
机译:我们从强相互作用的哑铃星系NGC 4782(3C 278)和NGC 4783的49.3 ks Chandra X射线观察结果中得出结果,这些约束了相互作用的运动学和弯曲与NGC 4782相关的射流的模型。以NGC 4782为中心的近似于球形的群气分布,远离相互作用区域,几乎是等温的,平均温度kT〜1.4±0.4 keV。 X射线形态表明,NGC 4783属于一个巨大的星系群(LGG 316),NGC 4782几乎处于静止状态,处于该群势的中心。 NGC 4783在东方显示出尖锐的X射线表面亮度边缘(冷锋),在西方显示出约15 kpc的压力剥离的冲压尾巴。对这个冷锋的分析表明,NGC 4783以870 _(-400)〜(+270)km s〜(-1)的总速度向东移动(1.4 _(-0.7)〜(+0.5)马赫角相对于我们的天空,相对于天空为46°(> 33°),具有〜45 Myr的旧X射线腔,焓为4.4×10〜(57)ergs,与3C 278的东部无线电波重合。在射流和反射流上都发现了X射线结,与射电发射的峰值一致,如果我们假设在3C 278出现轻度相对论的射流,则冲头压力速度为100-200 km s〜(-1)撞击东部射流,作用在西部无线电波瓣上的〜170 km s〜(-1)足以产生观测到的弯曲,这些速度可能是由于星系之间的高速相互作用引起的周围气体的整体运动引起的。 ,通过主星系NGC 4782相对于IGM的运动或这些过程的组合。

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