Infrared Spectroscopy of Be Stars: Influence of the Envelope Parameters on Brackett-Series Behaviour

IF 3.2 Q2 ASTRONOMY & ASTROPHYSICS
Galaxies Pub Date : 2023-08-17 DOI:10.3390/galaxies11040090
Y. R. Cochetti, A. Granada, M. Arias, A. Torres, C. Arcos
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Abstract

The IR spectra of Be stars display numerous hydrogen recombination lines, constituting a great resource for obtaining information on the physical and dynamic structures of different regions within the circumstellar envelope. Nevertheless, this spectral region has not been analysed in depth, and there is a lack of synthetic spectra with which to compare observations. Therefore, we computed synthetic spectra with the HDUST code for different disc parameters. Here, we present our results on the spectral region that includes lines of the Brackett series. We discuss the dependence of the line series strengths on several parameters that describe the structure of the disc. We also compared model line profiles, fluxes, and EWs with observational data for two Be stars (MX Pup and π Aqr). Even though the synthetic spectra adequately fit our observations of both stars and allow us to constrain the parameters of the disc, there is a discrepancy with the observed data in the EW and flux measurements, especially in the case of MX Pup. It is possible that by including Brackett lines of higher terms or adding the analysis of other series, we may be able to better constrain the parameters of the observed disc.
Be星的红外光谱:包络参数对Brackett级数行为的影响
Be星的红外光谱显示了大量的氢复合线,这是获得星周包层内不同区域物理和动力学结构信息的重要资源。然而,这一光谱区域尚未得到深入分析,也缺乏可用于比较观测结果的合成光谱。因此,我们使用HDUST代码计算了不同圆盘参数的合成光谱。在这里,我们给出了包括Brackett级数线的光谱区域的结果。我们讨论了线序列强度对描述圆盘结构的几个参数的依赖性。我们还将模型线轮廓、通量和EWs与两颗Be恒星(MX Pup和πAqr)的观测数据进行了比较。尽管合成光谱充分符合我们对这两颗恒星的观测结果,并使我们能够约束圆盘的参数,但EW和通量测量中的观测数据存在差异,尤其是在MX Pup的情况下。通过包括更高项的Brackett线或添加其他系列的分析,我们可能能够更好地约束观察到的圆盘的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Galaxies
Galaxies Physics and Astronomy-Astronomy and Astrophysics
CiteScore
4.90
自引率
12.00%
发文量
100
审稿时长
11 weeks
期刊介绍: Es una revista internacional de acceso abierto revisada por pares que proporciona un foro avanzado para estudios relacionados con astronomía, astrofísica y cosmología. Areas temáticas Astronomía Astrofísica Cosmología Astronomía observacional: radio, infrarrojo, óptico, rayos X, neutrino, etc. Ciencia planetaria Equipos y tecnologías de astronomía. Ingeniería Aeroespacial Análisis de datos astronómicos. Astroquímica y Astrobiología. Arqueoastronomía Historia de la astronomía y cosmología. Problemas filosóficos en cosmología.
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