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首页> 外文期刊>Astronomy and astrophysics >A survey of HC3N in extragalactic sources - Is HC3N a tracer of activity in ULIRGs?
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A survey of HC3N in extragalactic sources - Is HC3N a tracer of activity in ULIRGs?

机译:河床外源中的HC3N调查-HC3N是否是ULIRG中活性的示踪剂?

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摘要

Context. HC3N is a molecule that is mainly associated with Galactic star-forming regions, but it has also been detected in extragalactic environments. Aims. To present the first extragalactic survey of HC3N, when combining earlier data from the literature with six new single-dish detections, and to compare HC3N with other molecular tracers (HCN, HNC), as well as other properties (silicate absorption strength, IR flux density ratios, C?ii flux, and megamaser activity). Methods. We present mm IRAM?30?m, OSO?20?m, and SEST observations of HC3N rotational lines (mainly the J?=?10–9 transition) and of the J?=?1–0 transitions of HCN and HNC. Our combined HC3N data account for 13?galaxies (excluding the upper limits reported for the non-detections), while we have HCN and HNC data for more than 20 galaxies. Results. A preliminary definition “HC3N-luminous galaxy” is made based upon the HC3N/HCN ratio. Most (~80%) HC3N-luminous galaxies seem to be deeply obscured galaxies and (U)LIRGs. A majority (~60% or more) of the HC3N-luminous galaxies in the sample present OH mega- or strong kilomaser activity. A possible explanation is that both HC3N and OH megamasers need warm dust for their excitation. Alternatively, the dust that excites the OH megamaser offers protection against UV destruction of HC3N. A high silicate absorption strength is also found in several of the HC3N-luminous objects, which may help the HC3N to survive. Finally, we find that a high HC3N/HCN ratio is related to a high dust temperature and a low C?ii flux.
机译:上下文。 HC3N是主要与银河系恒星形成区域相关的分子,但也已在银河系外环境中检测到。目的结合文献中的早期数据和六种新的单皿检测方法,首次对HC3N进行河外调查,并将HC3N与其他分子示踪剂(HCN,HNC)以及其他特性(硅酸盐吸收强度,IR通量)进行比较密度比,C?ii通量和兆瓦斯活性)。方法。我们给出了HC3N旋转线(主要是J?=?10-9过渡)以及HCN和HNC的J?=?1-0过渡的mm IRAM?30?m,OSO?20?m和SEST观测值。我们的HC3N数据合计占13个星系(不包括未检测到的报告上限),而我们拥有20多个星系的HCN和HNC数据。结果。根据HC3N / HCN比得出“ HC3N发光星系”的初步定义。大部分(〜80%)HC3N发光星系似乎被深深遮盖的星系和(U)LIRGs。样品中的大多数HC3N发光星系(约60%或更多)表现出OH兆级或强千体活性。可能的解释是HC3N和OH巨型物质都需要温暖的粉尘进行激​​发。或者,激发OH巨型激光器的粉尘可防止HC3N被紫外线破坏。在一些HC3N发光物体中也发现了高的硅酸盐吸收强度,这可能有助于HC3N生存。最后,我们发现高HC3N / HCN比与高粉尘温度和低C aii通量有关。

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