利用 SVO 滤波器轮廓服务和测光工具对矮星和巨型 FGK 星进行测光分离

Carlos Rodrigo, Patricia Cruz, J. F. Aguilar, Alba Aller, Enrique Solano, M. C. Gálvez-Ortiz, F. Jiménez-Esteban, P. Mas-Buitrago, Amelia Bayo, M. Cortés-Contreras, R. Murillo-Ojeda
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引用次数: 0

摘要

本文的重点是利用西班牙虚拟天文台(SVO)滤光片轮廓服务和相关的测光工具,通过窄波段测光数据对 FGK 矮星和巨星进行分离。我们从MILES、STELIB和ELODIE恒星库中选择了光谱,并使用SVO测光工具在15个J-PAS窄滤光片中得出了合成测光结果,这些滤光片是为覆盖对重力变化敏感的光谱特征而特别选择的。利用高斯混合模型和支持向量机等机器学习技术,我们根据J-PAS的颜色定义了几种区分矮星和巨星的标准。我们选择了五种色彩-颜色图,它们最有可能区分这两种样本。我们的研究结果表明,在所研究的样本中,FGK 星的总体准确率为 sim 0.97,但也发现了与光度类型和恒星有效温度有关的因素。 我们还定义了有效温度在4\,000和7\,000\,K之间的矮星的色温关系,这样就可以通过四个J-PAS滤光片($J0450$、$J0510$、$J0550$和$J0620$)来估计恒星的有效温度了。此外,我们还将研究扩展到了M型巨星和矮星,达到了与FGK恒星类似的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photometric segregation of dwarf and giant FGK stars using the SVO Filter Profile Service and photometric tools
This paper is focused on the segregation of FGK dwarf and giant stars through narrow-band photometric data using the Spanish Virtual Observatory (SVO) Filter Profile Service and associated photometric tools. We selected spectra from the MILES, STELIB, and ELODIE stellar libraries, and used SVO photometric tools to derive the synthetic photometry in 15 J-PAS narrow filters, which were especially selected to cover spectral features sensitive to gravity changes. Using machine-learning techniques as the Gaussian mixture model and the support vector machine, we defined several criteria based on J-PAS colours to discriminate between dwarf and giant stars. We selected five colour-colour diagrams that presented the most promising separation between both samples. Our results show an overall accuracy in the studied sample of sim 0.97 for FGK stars, although a dependence on the luminosity type and the stellar effective temperature was found. We also defined a colour-temperature relation for dwarf stars with effective temperatures between 4\,000 and 7\,000\,K, which allows one to estimate the stellar effective temperature from four J-PAS filters ($J0450$, $J0510$, $J0550$, and $J0620$). Additionally, we extended the study to M-type giant and dwarf stars, achieving a similar accuracy to that for FGK stars.
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