Insights into the Condensation of PAHs in the Envelope of IRC +10216

L. Biennier, H. Sabbah, S. Klippenstein, V. Chandrasekaran, I. Sims, B. Rowe
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引用次数: 3

Abstract

The mechanisms of nucleation and growth of carbon dust particles in circumstellar envelopes of carbon-rich stars in the red giant and AGB phases of their evolution are poorly understood. It has been proposed that the transition of gas phase species to solid particles, is achieved by the formation of a critical nucleus composed of two PAHs held together by van der Waals forces. Some insights into the validity of the nucleation of PAH molecules in the envelope can be gained through the investigation of the thermodynamics of dimers, representing the first stage towards condensation. We have performed experiments to identify the temperature range over which small PAH clusters form in saturated uniform supersonic flows. The kinetics of the formation has also been investigated. The experimental data have been combined with theoretical calculations. We unambiguously demonstrate that the association of small PAHs such as pyrene (C16H10) is slower than the destruction of the dimer in warm and hot environments such as IRC +10216. Our findings challenge a formation model based on the phys- ical stacking of small PAH units in circumstellar shells of carbon rich stars.
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多环芳烃在IRC +10216包膜中的缩合
在红巨星和AGB阶段,富碳恒星的星周包膜中碳尘埃粒子的成核和生长机制尚不清楚。有人提出气相物质向固体粒子的转变是通过形成由两个多环芳烃通过范德华力结合在一起的临界核来实现的。通过对二聚体热力学的研究,可以对包膜中多环芳烃分子成核的有效性有一些了解,二聚体代表了凝结的第一阶段。我们进行了实验,以确定在饱和均匀超音速流动中形成小多环芳烃簇的温度范围。对地层动力学也进行了研究。实验数据已与理论计算相结合。我们明确地证明,在温暖和炎热的环境中,如IRC +10216,芘(C16H10)等小的多环芳烃的缔合比二聚体的破坏要慢。我们的发现挑战了基于富碳恒星的星周壳中小多环芳烃单元物理堆积的形成模型。
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