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Discovery of Time Variation of the Intensity of Molecular Lines in IRC+10216 in The Submillimeter and Far Infrared Domains

机译:在亚毫米和远红外域中发现IRC + 10216中分子线强度的时变

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摘要

We report on the discovery of strong intensity variations in the high rotational lines of abundant molecular species towards the archetypical circumstellar envelope of IRC+10216. The observations have been carried out with the HIFI instrument on board Herschel and with the IRAM 30-m telescope. They cover several observing periods spreading over 3 years. The line intensity variations for molecules produced in the external layers of the envelope most probably result from time variations in the infrared pumping rates. We analyze the main implications this discovery has on the interpretation of molecular line emission in the envelopes of Mira-type stars. Radiative transfer calculations have to take into account both the time variability of infrared pumping and the possible variation of the dust and gas temperatures with stellar phase in order to reproduce the observation of molecular lines at different epochs. The effect of gas temperature variations with stellar phase could be particularly important for lines produced in the innermost regions of the envelope. Each layer of the circumstellar envelope sees the stellar light radiation with a different lag time (phase). Our results show that this effect must be included in the models. The sub-mm and FIR lines of AGB stars cannot anymore be considered as safe intensity calibrators.
机译:我们报告了对IRC + 10216的原型星际包络线的丰富分子物种的高旋转线中强烈强度变化的发现。观测是通过Herschel 上的HIFI仪器和IRAM 30米望远镜进行的。它们涵盖了跨越3年的几个观测期。在外壳的外层中产生的分子的线强度变化很可能是由红外泵浦速率的时间变化引起的。我们分析了这一发现对Mira型恒星包壳分子线发射的解释的主要含义。辐射传递计算必须考虑到红外泵浦的时间可变性以及恒星相引起的粉尘和气体温度的可能变化,以便重现在不同时期对分子线的观察。气体温度随恒星相变化的影响对于在封套最内层区域产生的管线可能特别重要。绕星际包络的每一层都可以看到恒星光辐射,其滞后时间(相位)不同。我们的结果表明,该效应必须包含在模型中。 AGB星的亚毫米和FIR线不再可以视为安全强度校准器。

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