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首页> 外文期刊>The Astrophysical journal >LINE-DEPTH RATIOS IN H-BAND SPECTRA TO DETERMINE EFFECTIVE TEMPERATURES OF G- AND K-TYPE GIANTS AND SUPERGIANTS
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LINE-DEPTH RATIOS IN H-BAND SPECTRA TO DETERMINE EFFECTIVE TEMPERATURES OF G- AND K-TYPE GIANTS AND SUPERGIANTS

机译:H谱带中的线深度比确定G和K型配剂和上配剂的有效温度

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摘要

The stellar effective temperature is the fundamental parameter of stellar atmospheres. It characterizes the spectra and plays an essential role in chemical abundance analysis. Previous optical studies have shown that line-depth ratios (LDRs) are good indicators of the effective temperature. Essentially, the ratios of absorption lines with different excitation potentials can be used as temperature scales. The most important advantage of LDRs is their robustness against interstellar reddening and extinction. Furthermore, the scales are constructed and calibrated empirically by observables. Although this method is well-established for optical spectra, we require infrared high-resolution spectroscopy to access the most obscured stars in the Galactic disk and thereby understand the Milky Way's structure and evolution in the innermost region. This study newly derives the temperature scales from the LDRs in infrared spectra. We explored LDRs in the high-resolution H-band spectra (1.4–1.8 μm) of well-known stars in the solar neighborhood obtained with Subaru/infrared camera and spectrograph. We found nine pairs of absorption lines whose LDRs allow us to determine the temperatures of G- and K-type giants/supergiants to an accuracy of ~60 K. Checking the dependency of our scales on stellar parameters, we found that our developed temperature scales may slightly bias the estimates for low-metal stars, [Fe/H] dex.
机译:恒星有效温度是恒星大气的基本参数。它可以表征光谱,并在化学丰度分析中起重要作用。先前的光学研究表明,线深比(LDR)是有效温度的良好指标。本质上,具有不同激发电势的吸收线的比率可以用作温度标度。 LDR的最重要优点是其抵抗星际变红和灭绝的坚固性。此外,比例尺是通过观测值凭经验构建和校准的。尽管此方法已为光谱建立了良好的方法,但我们需要红外高分辨率光谱法才能访问银河系盘中最模糊的恒星,从而了解银河系在最内层区域的结构和演化。这项研究新近从红外光谱中的LDR推导出了温度标度。我们在斯巴鲁/红外相机和光谱仪获得的太阳邻区高分辨率恒星的高分辨率H波段光谱(1.4–1.8μm)中探索了LDR。我们发现了九对吸收线,它们的LDR使我们能够确定G型和K型巨人/超巨星的温度,精确度约为60K。检查天平对恒星参数的依赖性,我们发现我们开发的温标可能会使低金属恒星的估计值略有偏差[Fe / H]

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