论文标题

低表面亮度星系UGC 628中的一个星象

A Recent Starbust in the Low Surface Brightness Galaxy UGC 628

论文作者

Young, Jason E., de Naray, Rachel Kuzio, Wang, Sharon X.

论文摘要

作为Muscel程序的一部分(LSB星系的结构,化学和演变的多波长观测),我们介绍了低表面亮度(LSB)Galaxy UGC 628的恒星形成历史。 LSB星系的恒星形成历史在我们对星系组件的了解中是一个显着的差距,对暗物质 /巴属反馈,IgM气体积聚以及在低金属环境中恒星形成的物理学有影响。我们的程序与空间紫外线和IR成像同时使用基于地面的IFU光谱来以空间解析的方式确定LSB星系的星形构建历史。在这项工作中,我们介绍了我们的第一个目标的合适历史,以证明我们的技术和方法。我们的技术将这个星系的历史分为15个半阶段间隔时间段。在每个时间步中,每个Spaxel的恒星形成速率都假定为常数。然后,我们确定最能重现每个Spaxel中测得的光谱和光度法的15个恒星形成速率的集合。我们在UGC 628方面的主要发现是:a)UGC 628的可见特性随时间变化,在8 Gyr前的高表面亮度螺旋出现,并且在最近几十个Myr前几个恒星形成中的一集中的Starburst Galaxy在Myr前几十个,B)中心/核心地区建立了早期,但在8-10 Gyr中建立了3号GYR,并且是刚刚出现的,并且是刚刚出现的,并且曾经出现过,并且曾经出现过一定程度上的范围。最好的特征是斑点和零星。

We present the star-formation history of the low surface brightness (LSB) galaxy UGC 628 as part of the MUSCEL program (MUltiwavelength observations of the Structure, Chemistry, and Evolution of LSB galaxies). The star-formation histories of LSB galaxies represent a significant gap in our knowledge of galaxy assembly, with implications for dark matter / baryon feedback, IGM gas accretion, and the physics of star formation in low metallicity environments. Our program uses ground-based IFU spectra in tandem with space-based UV and IR imaging to determine the star-formation histories of LSB galaxies in a spatially resolved fashion. In this work we present the fitted history of our first target to demonstrate our techniques and methodology. Our technique splits the history of this galaxy into 15 semi-logarithmically spaced timesteps. Within each timestep the star-formation rate of each spaxel is assumed constant. We then determine the set of 15 star-formation rates that best recreate the spectra and photometry measured in each spaxel. Our main findings with respect to UGC 628 are: a) the visible properties of UGC 628 have varied over time, appearing as a high surface brightness spiral earlier than 8 Gyr ago and a starburst galaxy during a recent episode of star formation several tens of Myr ago, b) the central bar/core region was established early, around 8-10 Gyr ago, but has been largely inactive since, and c) star formation in the past 3 Gyr is best characterised as patchy and sporadic.

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