论文标题

用Megara绘制金属贫困HII Galaxy PHL 293B的电离气体

Mapping the ionized gas of the metal-poor HII galaxy PHL 293B with MEGARA

论文作者

Kehrig, C., Iglesias-Paramo, J., Vilchez, J. M., de Paz, A. Gil, Puertas, S. Duarte, Perez-Montero, E., Diaz, A. I., Gallego, J., Carrasco, E., Cardiel, N., Garcia-Vargas, M. L., Castillo-Morales, A., Cedazo, R., Gomez-Alvarez, P., Martinez-Delgado, I., Pascual, S., Perez-Calpena, A.

论文摘要

在这里,我们报告了使用高分辨率GTC/MEGARA IFU的GARAXY PHL293B的首次空间分辨光谱研究。 PHL293B是一种本地,极为贫困的高电离星系。这使得PHL 293B成为早期宇宙中星系的绝佳类似物。 Megara Aperture(〜12.5'​​'X 11.3'')覆盖了整个PHL 293B主体及其深度接触气体。我们创建并讨论了所有相关发射线,线比和物理化学特性的图。根据观察到的DiganoStic线比,无论Megara孔径如何,狭窄的发射气体似乎主要是由巨大的恒星电离。我们在Balmer系列(H $α$,H $β$)中检测到低强度的宽发射成分和蓝光吸收,该吸收位于Galaxy ISM最亮区域。在O/H中观察到了数百个parsec的化学均匀性。我们将氧气丰度12+log(o/h)= 7.64 $ \ pm $ 0.06衍生自PHL293B集成光谱作为银河系的代表金属性。我们的IFU数据首次揭示了来自PHL 293B的Nebular HEII4686发射在空间上扩展并与电离恒星群集一致,并允许我们计算其绝对HEII电离光子通量。未发现狼射线颠簸,因此不包括狼射线星作为主要的HEII激发源。讨论了Nebular HEII4686的起源。

Here we report the first spatially resolved spectroscopic study for the galaxy PHL293B using the high-resolution GTC/MEGARA IFU. PHL293B is a local, extremely metal-poor, high ionization galaxy. This makes PHL 293B an excellent analogue for galaxies in the early Universe. The MEGARA aperture (~12.5''x 11.3'') covers the entire PHL 293B main body and its far-reaching ionized gas. We created and discussed maps of all relevant emission lines, line ratios and physical-chemical properties of the ionized ISM. The narrow emission gas appears to be ionized mainly by massive stars according to the observed diganostic line ratios, regardless of the position across the MEGARA aperture. We detected low intensity broad emission components and blueshifted absorptions in the Balmer lines (H$α$,H$β$) which are located in the brightest zone of the galaxy ISM. A chemically homogeneity, across hundreds of parsecs, is observed in O/H. We take the oxygen abundance 12+log(O/H)=7.64 $\pm$ 0.06 derived from the PHL293B integrated spectrum as the representative metallicity for the galaxy. Our IFU data reveal for the first time that the nebular HeII4686 emission from PHL 293B is spatially extended and coincident with the ionizing stellar cluster, and allow us to compute its absolute HeII ionizing photon flux. Wolf-Rayet bumps are not detected excluding therefore Wolf-Rayet stars as the main HeII excitation source. The origin of the nebular HeII4686 is discussed.

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