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首页> 外文期刊>The Astrophysical journal >SEXTANS A: A CASE STUDY OF STAR FORMATION AND GAS DENSITIES IN IRREGULAR GALAXIES
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SEXTANS A: A CASE STUDY OF STAR FORMATION AND GAS DENSITIES IN IRREGULAR GALAXIES

机译:六边形A:不规则星系中恒星形成和气体密度的个案研究

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摘要

As part of an effort to understand how stars form in irregular galaxies, we have used UBV and Hα imaging to trace the past and current star formation in the tiny irregular galaxy Sextans A. We have also used a published rotation curve to calculate the critical gas density necessary for instabilities that lead to cloud formation and then to star formation according to star formation models. The current star formation is not uniformly distributed throughout the galaxy but appears to move around on large spatial scales. A comparison with the observed gas surface densities shows that the current star formation is located in the region of the galaxy with higher radially averaged observed gas densities relative to the critical density for stability of the gas. However, this ratio is lower than the low end of what is observed for actively star-forming spiral galaxies and suggests that the gas in Sextans A is marginally stable against collapse. This means that clouds in Sextans A have a harder time forming, which is consistent with the low absolute rate of star formation in Sextans A integrated over its lifetime compared to spirals. Because Sextans A is such a small galaxy, the coming and going of normal giant H II regions or gas clouds can dominate the star formation and interstellar medium of the galaxy: Star formation is a very grainy process in small galaxies. It is also likely that other processes, such as feedback from newly formed massive stars, play important roles in facilitating future cloud formation.
机译:为了了解恒星如何在不规则星系中形成,我们使用UBV和Hα成像来追踪微小不规则星系Sextans A中的过去和当前恒星的形成。我们还使用了已发布的自转曲线来计算临界气体导致形成云然后根据恒星形成模型形成恒星的不稳定性所必需的密度。当前的恒星形成并非均匀分布在整个银河系中,而是似乎在较大的空间尺度上四处移动。与观察到的气体表面密度的比较表明,当前恒星形成位于银河系区域,相对于气体稳定性的临界密度,径向平均观察到的气体密度更高。但是,该比率低于活跃形成恒星的旋涡星系的观测值的低端,这表明Sextans A中的气体对于崩塌是略微稳定的。这意味着Sextans A中的云的形成时间更困难,这与与螺旋形相比,Sextans A的整个生命周期内恒星形成的绝对率较低。由于Sextans A是一个很小的星系,因此正常的巨型H II区域或气体云的来来往往会主导该星系的恒星形成和星际介质:在小星系中,恒星形成是一个非常粒状的过程。其他过程,例如来自新形成的大质量恒星的反馈,也可能在促进未来云的形成中发挥重要作用。

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