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A survey of HC_3N in extragalactic sources: Is HC_3N a tracer of activity in ULIRGs?

机译:对河外源中HC_3N的一项调查:HC_3N是否是ULIRG中活性的示踪剂?

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摘要

Context. HC_3N is a molecule that is mainly associated with Galactic star-forming regions, but it has also been detected in extragalactic environments.udAims. To present the first extragalactic survey of HC_3N, when combining earlier data from the literature with six new single-dish detections, and to compare HC_3N with other molecular tracers (HCN, HNC), as well as other properties (silicate absorption strength, IR flux density ratios, C_(II) flux, and megamaser activity).udMethods. We present mm IRAM 30 m, OSO 20 m, and SEST observations of HC_3N rotational lines (mainly the J = 10–9 transition) and of the J = 1–0 transitions of HCN and HNC. Our combined HC_3N 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.udResults. A preliminary definition “HC_3N-luminous galaxy” is made based upon the HC_3N/HCN ratio. Most (~80%) HC_3N-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 HC_3N and OH megamasers need warm dust for their excitation. Alternatively, the dust that excites the OH megamaser offers protection against UV destruction of HC_3N. A high silicate absorption strength is also found in several of the HC_3N-luminous objects, which may help the HC3N to survive. Finally, we find that a high HC_3N/HCN ratio is related to a high dust temperature and a low C_(II) flux.ud
机译:上下文。 HC_3N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。 udAims。结合文献中的早期数据和六个新的单皿检测结果,首次提出HC_3N的河外调查,并将HC_3N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)通量和兆瓦瑟活性)。我们介绍了mm IRAM 30 m,OSO 20 m和HC_3N旋转线(主要是J = 10–9跃迁)以及HCN和HNC的J = 1–0跃迁的SEST观测值。我们的合并HC_3N数据包含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。 udResults。根据HC_3N / HCN比得出初步定义“ HC_3N-发光星系”。大部分(〜80%)HC_3N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兆或强烈的千质活性。可能的解释是HC_3N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HC_3N被紫外线破坏。在一些HC_3N发光物体中也发现了高的硅酸盐吸收强度,这可以帮助HC3N生存。最后,我们发现高HC_3N / HCN比与高粉尘温度和低C_(II)通量有关。 ud

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