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New Observations of the Interstellar Medium in the Lyman Break Galaxy MS 1512-cB58

机译:Lyman Break Galaxy ms中星际介质的新观测   1512-cB58

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摘要

We present the results of a detailed study of the interstellar medium of MS1512-cB58, an L* Lyman break galaxy at z = 2.7276, based on new spectralobservations obtained with the Echelle Spectrograph and Imager on the Keck IItelescope at 58 km/s resolution. We focus in particular on the chemicalabundances and kinematics of the interstellar gas and our main findings are asfollows. Even at this relatively early epoch, the ISM of this galaxy is alreadyhighly enriched in elements released by Type II supernovae; the abundances ofO, Mg, Si, P, and S are all about 2/5 of their solar values. In contrast, N andthe Fe-peak elements Mn, Fe, and Ni are underabundant by a factor of about 3.Based on current ideas of stellar nucleosynthesis, these results can beunderstood if most of the metal enrichment in cB58 has taken place within thelast 300 million years, the timescale for the release of N from intermediatemass stars. cB58 appears to be an example of a galaxy in the process ofconverting its gas into stars on a few dynamical timescales; quite possibly weare witnessing the formation of a galactic bulge or an elliptical galaxy. Theenergetic star formation activity has stirred the interstellar medium to highvelocities of up to 1000 km/s. The net effect is a bulk outflow of the ISM at aspeed of 255 km/s and at a rate which exceeds the star formation rate. It isunclear whether this gas will be lost or retained by the galaxy. We point outthat the chemical and kinematic properties of cB58 are markedly different fromthose of most damped Lyman alpha systems at the same redshift.
机译:我们基于在58 km / s分辨率下用Echelle光谱仪和成像仪在Keck IItelescope上获得的新光谱观测结果,对z151 = 2.7276的L *莱曼断裂星系MS1512-cB58星际介质的详细研究结果进行了介绍。我们特别关注星际气体的化学丰度和运动学,主要发现如下。即使在这个相对较早的时期,该星系的ISM也已经高度富含II型超新星释放的元素。 O,Mg,Si,P和S的丰度都约为其太阳值的2/5。相比之下,N和Fe峰值元素Mn,Fe和Ni的丰度约为3倍。基于目前的恒星核合成思想,如果cB58中的大多数金属富集发生在最近300天内,这些结果就可以被理解。百万年,这是中间质量恒星释放N的时间尺度。 cB58似乎是星系在一些动态时标上将其气体转化为恒星的过程中的一个例子;很有可能目睹银河隆起或椭圆星系的形成。高能恒星的形成活动已经将星际介质搅动到高达1000 km / s的高速。最终结果是ISM以255 km / s的速度和超过恒星形成速度的速度大量流出。目前尚不清楚这种气体是否会被银河损失或保留。我们指出,在相同的红移下,cB58的化学和运动学性质与大多数阻尼的Lymanα系统明显不同。

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