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Herschel-HOBYS study of the earliest phases of high-mass star formation in NGC 6357 ★★

机译: Herschel -HOBYS研究NGC 6357中高质量恒星形成的最早阶段 ★★

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Aims. To constrain models of high-mass star formation it is important to identify the massive dense cores (MDCs) that are able to form high-mass star(s). This is one of the purposes of the Herschel /HOBYS key programme. Here, we carry out the census and characterise of the properties of the MDCs population of the NGC 6357 H? II region. Methods. Our study is based on the Herschel /PACS and SPIRE 70?500? μ m images of NGC 6357 complemented with (sub-)millimetre and mid-infrared data. We followed the procedure established by the Herschel /HOBYS consortium to extract ~0.1 pc massive dense cores using the getsources software. We estimated their physical parameters (temperatures, masses, luminosities) from spectral energy distribution (SED) fitting. Results. We obtain a complete census of 23 massive dense cores, amongst which one is found to be IR-quiet and twelve are starless, representing very early stages of the star-formation process. Focussing on the starless MDCs, we have considered their evolutionary status, and suggest that only five of them are likely to form a high-mass star. Conclusions. We find that, contrarily to the case in NGC 6334, the NGC 6357 region does not exhibit any ridge or hub features that are believed to be crucial to the massive star formation process. This study adds support for an empirical model in which massive dense cores and protostars simultaneously accrete mass from the surrounding filaments. In addition, the massive star formation in NGC 6357 seems to have stopped and the hottest stars in Pismis 24 have disrupted the filaments.
机译:目的为了限制高质量恒星形成的模型,重要的是要确定能够形成高质量恒星的块状密集核(MDC)。这是Herschel / HOBYS关键计划的目的之一。在这里,我们对NGC 6357 H?的MDC人口进行了普查和特征分析。二区。方法。我们的研究基于Herschel / PACS和SPIRE 70?500? NGC 6357的μm图像补充了(亚)毫米和中红外数据。我们按照Herschel / HOBYS联盟建立的程序,使用getsources软件提取了约0.1 pc的块状密集核。我们根据光谱能量分布(SED)拟合估算了它们的物理参数(温度,质量,光度)。结果。我们获得了23个质量大的密集核的完整人口普查,其中一个被发现是IR安静的,而十二个是无星的,这代表了恒星形成过程的非常早期。着眼于无恒星MDC,我们已经考虑了它们的进化状态,并建议其中只有五个可能形成高质量恒星。结论。我们发现,与NGC 6334中的情况相反,NGC 6357地区没有任何被认为对大规模恒星形成过程至关重要的脊或中心特征。这项研究为实证模型提供了支持,在实证模型中,大量密集的核和原恒星同时从周围的细丝中积累了质量。另外,NGC 6357中的大质量恒星形成似乎已经停止,而Pismis 24中最热的恒星破坏了灯丝。

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