论文标题

NGC253中心的超级明星簇的形态型体系结构

The Morpho-Kinematic Architecture of Super Star Clusters in the Center of NGC253

论文作者

Levy, Rebecca C., Bolatto, Alberto D., Leroy, Adam K., Sormani, Mattia C., Emig, Kimberly L., Gorski, Mark, Lenkić, Laura, Mills, Elisabeth A. C., Tarantino, Elizabeth, Teuben, Peter, Veilleux, Sylvain, Walter, Fabian

论文摘要

附近的Galaxy NGC \ 253的中心拥有仍在形成过程中的十几个超级星团(SSC)的人口。爆发的大部分恒星形成集中在这些SSC中,而Starburst则可以从星系中提供多相流出。在这项工作中,我们使用Atacama大毫米/亚毫米阵列(ALMA)的数据测量了向NGC \,253的350〜GHz尘埃连续发射。我们报告第一次在流出中检测到350〜GHz(灰尘)连续发射,这与西南突出的流媒体有关。在此功能中,灰尘发射的宽度约为$ \ $ 〜8〜PC,位于CO发射的外边缘,对应于$ \ sim〜(8-17)\ times10^6 $ 〜m $ _ $ _ \ odot $的分子气体质量。在Starburst核中,我们测量了SSC的分辨径向曲线,大小和分子气体。与以前的空间分辨率较低的工作相比,SSC在Radii $ 0.4-0.7 $ 〜PC中分解为较小的子结构。在投影中,SSC,灰尘和密集的分子气似乎是薄的,几乎是线性的结构,长度约为155〜PC。这种结构的形态和运动学可以很好地解释为气体,因为$ x_2 $ orbits在禁止潜力的中心。我们限制了SSC本身的形态形态排列,发现椭圆形的,棱角支撑的环是对SSC的形态和运动学的很好描述。

The center of the nearby galaxy NGC\,253 hosts a population of more than a dozen super star clusters (SSCs) which are still in the process of forming. The majority of the star formation of the burst is concentrated in these SSCs, and the starburst is powering a multiphase outflow from the galaxy. In this work, we measure the 350~GHz dust continuum emission towards the center of NGC\,253 at 47~milliarcsecond (0.8 pc) resolution using data from the Atacama Large Millimeter/submillimeter Array (ALMA). We report the detection of 350~GHz (dust) continuum emission in the outflow for the first time, associated with the prominent South-West streamer. In this feature, the dust emission has a width of $\approx$~8~pc, is located at the outer edge of the CO emission, and corresponds to a molecular gas mass of $\sim~(8-17)\times10^6$~M$_\odot$. In the starburst nucleus, we measure the resolved radial profiles, sizes, and molecular gas masses of the SSCs. Compared to previous work at somewhat lower spatial resolution, the SSCs here break apart into smaller substructures with radii $0.4-0.7$~pc. In projection, the SSCs, dust, and dense molecular gas appear to be arranged as a thin, almost linear, structure roughly 155~pc in length. The morphology and kinematics of this structure can be well explained as gas following $x_2$ orbits at the center of a barred potential. We constrain the morpho-kinematic arrangement of the SSCs themselves, finding that an elliptical, angular momentum-conserving ring is a good description of the both morphology and kinematics of the SSCs.

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