论文标题

经典III:Starburst驱动的温暖电离流出的特性

CLASSY III: The Properties of Starburst-Driven Warm Ionized Outflows

论文作者

Xu, Xinfeng, Heckman, Timothy, Henry, Alaina, Berg, Danielle A., Chisholm, John, James, Bethan L., Martin, Crystal L., Stark, Daniel P., Aloisi, Alessandra, Amorín, Ricardo O., Arellano-Córdova, Karla Z., Bordoloi, Rongmon, Charlot, Stéphane, Chen, Zuyi, Hayes, Matthew, Mingozzi, Matilde, Sugahara, Yuma, Kewley, Lisa J., Ouchi, Masami, Scarlata, Claudia, Steidel, Charles C.

论文摘要

我们报告了在Cos Legacy Archive Spectroscocic调查(Classy)中,在45个低红移星形星系(Classy)样本中报告了银河流出的分析结果,并由五个带有cos数据的其他类似的starbursts增强。流出是通过横跨各种电离电位的金属的蓝光吸收台追踪的。经典数据的高质量和广泛的光谱覆盖范围使我们能够从静态ISM引起的吸收,这是由于流出引起的。我们进一步使用不同的线多重组和双线,以确定覆盖分数,柱密度和电离状态,这是每个流出的速度的函数。我们测量了流出的平均速度和速度宽度,并发现在前两个属性的四个质量范围内,两者都与恒星形成速率,星系质量和圆速度相关。我们还估计金属,质量,动量和动能的流出速率。我们发现,最多只有大约20%的硅被超新星在Starburst中产生和弹出,这是我们观察到的温暖阶段。流出的质量负载因子随着圆形和流速速度(log-log slope $ \ sim $ -1.6)而陡峭而相反,并且达到矮星系的$ \ sim 10 $。我们发现流出通常携带大约10%至100%由巨大恒星注入的动量和大约1%至20%的动能。我们表明,这些结果对银河风的模型和模型进行了有趣的限制以及新的见解。

We report the results of analyses of galactic outflows in a sample of 45 low-redshift starburst galaxies in the COS Legacy Archive Spectroscopic SurveY (CLASSY), augmented by five additional similar starbursts with COS data. The outflows are traced by blueshifted absorption-lines of metals spanning a wide range of ionization potential. The high quality and broad spectral coverage of CLASSY data enable us to disentangle the absorption due to the static ISM from that due to outflows. We further use different line multiplets and doublets to determine the covering fraction, column density, and ionization state as a function of velocity for each outflow. We measure the outflow's mean velocity and velocity width, and find that both correlate in a highly significant way with the star-formation rate, galaxy mass, and circular velocity over ranges of four orders-of-magnitude for the first two properties. We also estimate outflow rates of metals, mass, momentum, and kinetic energy. We find that, at most, only about 20% of silicon created and ejected by supernovae in the starburst is carried in the warm phase we observe. The outflows' mass-loading factor increases steeply and inversely with both circular and outflow velocity (log-log slope $\sim$ -1.6), and reaches $\sim 10$ for dwarf galaxies. We find that the outflows typically carry about 10 to 100% of the momentum injected by massive stars and about 1 to 20% of the kinetic energy. We show that these results place interesting constraints on, and new insights into, models and simulations of galactic winds.

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