On the detectability and parameterization of binary stars through spectral energy distributions

IF 1.1 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Vikrant V. Jadhav
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引用次数: 0

Abstract

This study examines the characterization of binary star systems using Spectral Energy Distributions (SEDs), a technique increasingly essential with the rise of large-scale astronomical surveys. Binaries can emit flux at different regions of the electromagnetic spectrum, making SEDs a valuable tool in identifying and characterizing unresolved binary systems. However, fitting multi-component models to SEDs and recovering accurate stellar parameters remains challenging due to nonlinear fitting methods and inherent uncertainties in the data and the spectral models. In this work, a simplified approach was used to model stars as blackbodies, and we tested the accuracy of parameter recovery from SEDs, particularly by focusing on secondary stars. We explored a range of primary properties, filter sets, and noise models. Special attention was given to two case studies: one examining the detection of unresolved binaries using Gaia XP spectra, and the other focusing on identifying hotter companions in binary systems using UV-IR SEDs. Although an analytic prescription for recoverability is impossible, we present a simplified model and the necessary python tools to analyze any potential binary system. Finally, we propose using blackbody models as a baseline for error estimation in SED fitting. We offer a possible method for measuring fitting errors and improving the precision of binary star characterizations.

利用光谱能量分布研究双星的可探测性和参数化
这项研究使用光谱能量分布(SEDs)来研究双星系统的特征,随着大规模天文调查的兴起,这种技术越来越重要。双星可以在电磁波谱的不同区域发射通量,使sed成为识别和表征未解析双星系统的有价值的工具。然而,由于数据和光谱模型的非线性拟合方法和固有的不确定性,多组分模型拟合SEDs并恢复准确的恒星参数仍然具有挑战性。在这项工作中,我们使用了一种简化的方法来将恒星建模为黑体,并且我们测试了从SEDs中恢复参数的准确性,特别是通过关注次级恒星。我们探索了一系列主要属性、滤波器集和噪声模型。特别关注了两个案例研究:一个是使用盖亚XP光谱检测未解析双星,另一个是使用UV-IR SEDs识别双星系统中较热的伴星。虽然一个可恢复性的解析处方是不可能的,我们提出了一个简化的模型和必要的python工具来分析任何潜在的二元系统。最后,我们建议使用黑体模型作为SED拟合误差估计的基线。我们提供了一种测量拟合误差和提高双星表征精度的可能方法。
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来源期刊
Journal of Astrophysics and Astronomy
Journal of Astrophysics and Astronomy 地学天文-天文与天体物理
CiteScore
1.80
自引率
9.10%
发文量
84
审稿时长
>12 weeks
期刊介绍: The journal publishes original research papers on all aspects of astrophysics and astronomy, including instrumentation, laboratory astrophysics, and cosmology. Critical reviews of topical fields are also published. Articles submitted as letters will be considered.
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