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首页> 外文期刊>Astronomy and astrophysics >Water in IRC+10216: a genuine formation process by shock-induced chemistry in the inner wind
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Water in IRC+10216: a genuine formation process by shock-induced chemistry in the inner wind

机译:IRC + 10216中的水:内部风中的冲击诱导化学作用真正形成的过程

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Context. The presence of water in the wind of the extreme carbon star IRC+10216 has been confirmed by the Herschel telescope. The regions where the high-J H2O lines have been detected are close to the star at radii r?≤?15 R???. Aims. We investigate the formation of water and related molecules in the periodically-shocked inner layers of IRC+10216 where dust also forms and accelerates the wind. Methods. We describe the molecular formation by a chemical kinetic network involving carbon-and oxygen-based molecules. We then apply this network to the physical conditions pertaining to the dust-formation zone which experiences the passage of pulsation-driven shocks between 1 and 5 R???. We solve for a system of stiff, coupled, ordinary, and differential equations. Results. Non-equilibrium chemistry prevails in the dust-formation zone. H2O forms quickly above the photosphere from the synthesis of hydroxyl OH induced by the thermal fragmentation of CO in the hot post-shock gas. The derived abundance with respect to H2 at 5 R??? is 1.4?×?10-7, which excellently agrees with the values derived from Herschel observations. The non-equilibrium formation process of water will be active whatever the stellar C/O ratio, and H2O should then be present in the wind acceleration zone of all stars on the Asymptotic Giant Branch.
机译:上下文。赫歇尔望远镜已经证实了极端碳星IRC + 10216的风中存在水。已经检测到高J H 2 O线的区域在半径r 1≤≤15R 10处靠近恒星。目的我们研究了IRC + 10216周期性震动的内层中水和相关分子的形成,在该内层中,灰尘也形成并加速了风。方法。我们通过涉及碳和氧的分子的化学动力学网络描述了分子的形成。然后,我们将该网络应用于属于尘埃形成区的物理条件,该条件会经历1至5 R 50之间的脉动驱动的冲击。我们求解一个由刚性,耦合,常微分方程组成的系统。结果。在粉尘形成区普遍存在非平衡化学。 H2O在热后震荡气体中由CO的热裂解引起的羟基OH的合成迅速在光球上方形成。相对于5 R 2 H 2的丰度是1.4?×?10-7,与从Herschel观测得到的值非常吻合。无论恒星的C / O比率如何,水的非平衡形成过程都将很活跃,然后应在渐近巨型分支上所有恒星的风加速区中都存在H2O。

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