论文标题

h $ _2 $ -co-n $ _2 $气体混合物的EUV辐射下的化学反应:在不断发展的星星的外CSE中对光化学的影响

Chemistry under EUV Irradiation of H$_2$-CO-N$_2$ Gas Mixtures: Implications for Photochemistry in the Outer CSE of Evolved Stars

论文作者

Bourgalais, Jérémy, Bekaert, David V., Bacmann, Aurore, Marty, Bernard, Carrasco, Nathalie

论文摘要

{恒星的折叠信封(CSE)是复杂的化学物体,理论模型在阐述发生的化学过程的全面概述时遇到困难。随着光解离,离子中性反应和解离性重组可能在控制外部CSE的分子生长中起重要作用。这项工作的目的是为外CSE内的光化学驱动分子生长的途径提供实验性见解,以绘制这些分子富集环境中发生的化学过程的更完整图片。因此,通过气相实验将相关气体混合物暴露于极端紫外线(EUV)光子源中,在实验室中复制了简化的CSE环境。这种光化学反应器最终应允许我们研究在类似于外CSE的条件下发生的化学过程及其产生的产品。我们使用了最近开发的EUV灯,该灯耦合到APSIS光化学单元,以一个波长为73.6 nm,照射h $ _2 $,CO和N $ _2 $的相关气体混合物。通过对中性和阳离子分子的原位质谱分析来实现光化学反应器中化学物种的检测和鉴定。我们发现,在73.6 nm处暴露于Co-N $ _2 $ -H $ _2 $气体混合物向EUV光子诱导的光化学反应产生了复杂,中性和离子物种的形成。我们的工作表明,N $ _2 $ H $^+$可以通过光化学以及高度氧化的离子分子(如HCO $^+$)在CSE环境中形成。我们还观察到中性n富含N的有机物质,包括三唑和芳香族分子。这些结果证实了我们实验环境研究光化学反应的适用性,并提供了对外CSE分子生长机制的基本见解。

{CircumStellar Envelopes (CSEs) of stars are complex chemical objects for which theoretical models encounter difficulties in elaborating a comprehensive overview of the occurring chemical processes. Along with photodissociation, ion-neutral reactions and dissociative recombination might play an important role in controlling molecular growth in outer CSEs. The aim of this work is to provide experimental insights into pathways of photochemistry-driven molecular growth within outer CSEs to draw a more complete picture of the chemical processes occurring within these molecule-rich environments. A simplified CSE environment was therefore reproduced in the laboratory through gas-phase experiments exposing relevant gas mixtures to an Extreme UltraViolet (EUV) photon source. This photochemical reactor should ultimately allow us to investigate chemical processes and their resulting products occurring under conditions akin to outer CSEs. We used a recently developed EUV lamp coupled to the APSIS photochemical cell to irradiate CSE relevant gas mixtures of H$_2$, CO and N$_2$, at one wavelength, 73.6 nm. The detection and identification of chemical species in the photochemical reactor was achieved through in-situ mass spectrometry analysis of neutral and cationic molecules. We find that exposing CO-N$_2$-H$_2$ gas mixtures to EUV photons at 73.6 nm induces photochemical reactions that yield the formation of complex, neutral and ionic species. Our work shows that N$_2$H$^+$ can be formed through photochemistry along with highly oxygenated ion molecules like HCO$^+$ in CSE environments. We also observe neutral N-rich organic species including triazole and aromatic molecules. These results confirm the suitability of our experimental setting to investigate photochemical reactions and provide fundamental insights into the mechanisms of molecular growth in the outer CSEs.

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