论文标题

HARO 11-取消核星爆的结

Haro 11 -- Untying the knots of the nuclear starburst

论文作者

Sirressi, M., Adamo, A., Hayes, M., Bik, A., Strandänger, M., Runnholm, A., Oey, M. S., Östlin, G., Menacho, V., Smith, L. J.

论文摘要

恒星形成是一个聚集的过程,可调节星系的结构和演变。我们在矮星系Haro 11中研究了这一过程,以三个节(A,B,C)形成恒星。 HST成像的精美分辨率使我们能够将Starburst解析为数十万明星簇。我们使用光度模型在$ 10^5 $和$ 10^7 \,\ rm m _ {\ odot} $和20岁以下的年龄之间得出质量。我们观察到,聚集的恒星形成已经从结C(最古老的)到结(介于两者之间)到结B(最年轻)(最年轻)。我们使用孔径匹配的紫外线和光谱法(HST + Muse)独立研究Haro 11的恒星种群,并确定恒星种群的物理特性及其在1 kpc直径区域的反馈。我们根据结内的离子气体的性质讨论这些结果。我们将光学发射线的宽蓝色偏移组件解释为流出气体($ v_ {max} \ sim 400 $ km/s)。在结中检测到最强的流出,质量率为$ \ dot {m} _ {out} \ sim 10 \,\ rm m _ {\ odot}/yr $,比同一区域的星形高十倍。结B拥有年轻且未完全发达的流出,而结C可能已经撤离。由于Haro 11具有类似于高红移未解决的星系的特性,因此我们的工作还可以帮助理解High Redshift的恒星形成,这将由即将到来的设施打开。

Star formation is a clustered process that regulates the structure and evolution of galaxies. We investigate this process in the dwarf galaxy Haro 11, forming stars in three knots (A, B, C). The exquisite resolution of HST imaging allows us to resolve the starburst into tens of bright star clusters. We derive masses between $10^5$ and $10^7\,\rm M_{\odot}$ and ages younger than 20 Myr, using photometric modeling. We observe that the clustered star formation has propagated from knot C (the oldest) through knot A (in between) towards knot B (the youngest). We use aperture-matched ultraviolet and optical spectroscopy (HST + MUSE) to independently study the stellar populations of Haro 11 and determine the physical properties of the stellar populations and their feedback in 1 kpc diameter regions. We discuss these results in light of the properties of the ionised gas within the knots. We interpret the broad blue-shifted components of the optical emission lines as outflowing gas ($v_{max} \sim 400$ km/s). The strongest outflow is detected in knot A with a mass-rate of $\dot{M}_{out}\sim 10\,\rm M_{\odot}/yr$, ten times higher than the star-formation in the same region. Knot B hosts a young and not fully developed outflow, whereas knot C has likely been already evacuated. Because Haro 11 has properties similar to high-redshift unresolved galaxies, our work can additionally aid the understanding of star formation at high redshift, a window that will be opened by upcoming facilities.

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