论文标题

在存在杂质的情况下,对星际冰的吸收特征的系统研究

A Systematic Study on the Absorption Features of Interstellar Ices in Presence of Impurities

论文作者

Gorai, Prasanta, Sil, Milan, Das, Ankan, Sivaraman, Bhalamurugan, Chakrabarti, Sandip K., Ioppolo, Sergio, Puzzarini, Cristina, Kanuchova, Zuzana, Dawes, Anita, Mendolicchio, Marco, Mancini, Giordano, Barone, Vincenzo, Nakatani, Naoki, Shimonishi, Takashi, Mason, Nigel

论文摘要

光谱研究在星际冰及其结构的识别和分析中起关键作用。在星际冰中已经鉴定出某些分子是纯,混合甚至分层结构。水冰的吸收带特征随着不同类型的杂质(CO,CO2,CH3OH,H2CO等)的存在可以显着变化。在这项工作中,我们进行了一项理论研究,以了解水带频率的行为以及在存在杂质的情况下的强度。一项旨在验证HCOOH,NH3和CH3 OH对纯H2O ICE的频带曲线的影响的红外光谱实验的支持和补充。具体而言,我们探讨了对图表,弯曲,散装拉伸和自由OH拉伸模式的影响的影响。已将计算的带强度曲线与我们的新实验结果进行了比较,因此指出,在存在不同浓度的杂质的情况下,H2O及其强度的振动模式可能会发生很大变化。在大多数情况下,散装拉伸模式是受影响最大的振动,而弯曲是受影响最小的模式。发现HCOOH对图书馆,弯曲和散装伸展带轮廓具有很大的影响。在NH3的情况下,当杂质浓度变为50%时,自由OH拉伸带消失。这项工作最终将有助于正确解释未来通过即将到来的JWST任务对星际冰的未来详细的太空传播观察结果。

Spectroscopic studies play a key role in the identification and analysis of interstellar ices and their structure. Some molecules have been identified within the interstellar ices either as pure, mixed, or even as layered structures. Absorption band features of water ice can significantly change with the presence of different types of impurities (CO, CO2, CH3OH, H2CO, etc.). In this work, we carried out a theoretical investigation to understand the behavior of water band frequency, and strength in the presence of impurities. The computational study has been supported and complemented by some infrared spectroscopy experiments aimed at verifying the effect of HCOOH, NH3 , and CH3 OH on the band profiles of pure H2O ice. Specifically, we explored the effect on the band strength of libration, bending, bulk stretching, and free-OH stretching modes. Computed band strength profiles have been compared with our new and existing experimental results, thus pointing out that vibrational modes of H2O and their intensities can change considerably in the presence of impurities at different concentrations. In most cases, the bulk stretching mode is the most affected vibration, while the bending is the least affected mode. HCOOH was found to have a strong influence on the libration, bending, and bulk stretching band profiles. In the case of NH3, the free-OH stretching band disappears when the impurity concentration becomes 50%. This work will ultimately aid a correct interpretation of future detailed spaceborne observations of interstellar ices by means of the upcoming JWST mission.

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