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Molecular chemistry and the missing mass problem in planetary nebulae

机译:分子化学与行星状星云的缺失质量问题

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Context. Detections of molecular lines, mainly from H2 and CO, reveal molecular material in planetary nebulae. Observations of a variety of molecules suggest that the molecular composition in these objects differs from that found in interstellar clouds or in circumstellar envelopes. The success of the models, which are mostly devoted to explain molecular densities in specific planetary nebulae, is still partial however. Aims. The present study aims at identifying the influence of stellar and nebular properties on the molecular composition of planetary nebulae by means of chemical models. A comparison of theoretical results with those derived from the observations may provide clues to the conditions that favor the presence of a particular molecule. Methods. A self-consistent photoionization numerical code was adapted to simulate cold molecular regions beyond the ionized zone. The code was used to obtain a grid of models and the resulting column densities are compared with those inferred from observations. Results. Our models show that the inclusion of an incident flux of X-rays is required to explain the molecular composition derived for planetary nebulae. We also obtain a more accurate relation for the N(CO)/N(H2) ratio in these objects. Molecular masses obtained by previous works in the literature were then recalculated, showing that these masses can be underestimated by up to three orders of magnitude. We conclude that the problem of the missing mass in planetary nebulae can be solved by a more accurate calculation of the molecular mass.
机译:上下文。对分子线(主要来自H2和CO)的检测揭示了行星状星云中的分子物质。对各种分子的观察表明,这些天体中的分子组成不同于星际云或星际包膜中的分子组成。然而,这些模型的成功主要是用来解释特定行星状星云中的分子密度,但仍然取得了部分成功。目的本研究旨在通过化学模型确定恒星和星云特性对行星状星云分子组成的影响。将理论结果与从观察中得出的结果进行比较可能会为某些条件的存在提供线索,这些条件有利于特定分子的存在。方法。自洽的光电离数字代码适用于模拟电离区域以外的冷分子区域。该代码用于获得模型网格,并将所得的列密度与从观测值推断的密度进行比较。结果。我们的模型表明,需要包含X射线的入射通量来解释衍生自行星状星云的分子组成。我们还获得了这些对象中N(CO)/ N(H2)比的更精确关系。然后重新计算了先前文献中获得的分子质量,表明这些质量可能被低估了三个数量级。我们得出结论,可以通过更精确地计算分子质量来解决行星状星云中缺少质量的问题。

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