首页> 外文期刊>The Astrophysical Journal. Supplement Series >IMPROVED Co I log(gf) VALUES AND ABUNDANCE DETERMINATIONS IN THE PHOTOSPHERES OF THE SUN AND METAL-POOR STAR HD 84937
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IMPROVED Co I log(gf) VALUES AND ABUNDANCE DETERMINATIONS IN THE PHOTOSPHERES OF THE SUN AND METAL-POOR STAR HD 84937

机译:太阳和贫金属星HD 84937的改进的Co I log(gf)值和丰度测定

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New emission branching fraction measurements for 898 lines of the first spectrum of cobalt (Co I) are determined from hollow cathode lamp spectra recorded with the National Solar Observatory 1 m Fourier transform spectrometer on Kitt Peak, AZ and a high-resolution echelle spectrometer. Published radiative lifetimes from laser induced fluorescence measurements are combined with the branching fractions to determine accurate absolute atomic transition probabilities for the 898 lines. Hyperfine structure (hfs) constants for levels of neutral Co in the literature are surveyed and selected values are used to generate complete hfs component patterns for 195 transitions of Co I. These new laboratory data are applied to determine the Co abundance in the Sun and metal-poor star HD 84937, yielding log epsilon(Co) = 4.955 +/- 0.007 (sigma = 0.059) based on 82 Co I lines and log epsilon(Co) = 2.785 +/- 0.008 (sigma = 0.065) based on 66 Co I lines, respectively. A Saha or ionization balance test on the photosphere of HD 84937 is performed using 16 UV lines of Co II, and good agreement is found with the Co I result in this metal-poor ([Fe I/H] = -2.32, [Fe II/H] = -2.32) dwarf star. The resulting value of [Co/Fe]= +0.14 supports a rise of Co/Fe at low metallicity that has been suggested in other studies.
机译:通过使用国家太阳能天文台位于亚利桑那州基特峰的1 m傅里叶变换光谱仪和高分辨率阶梯光谱仪记录的空心阴极灯光谱,确定了第一线钴(Co I)898行的新发射支化分数测量结果。将激光诱导的荧光测量结果公布的辐射寿命与分支分数结合起来,以确定898线的准确绝对原子跃迁概率。对文献中中性Co的超细结构(hfs)常数进行了调查,并使用选定的值生成了195 Co I跃迁的完整hfs组分模式。这些新的实验室数据用于确定太阳和金属中Co的丰度-低质量恒星HD 84937,基于82 Co I线的对数epsilon(Co)= 4.955 +/- 0.007(sigma = 0.059),基于66 Co的对数epsilon(Co)= 2.785 +/- 0.008(sigma = 0.065)我行,分别。使用16条Co II紫外线线对HD 84937的光球进行了Saha或电离平衡测试,发现与Co I的一致性很好,导致该金属贫乏([Fe I / H] = -2.32,[Fe II / H] = -2.32)矮星。 [Co / Fe] = +0.14的结果支持了在其他金属中低金属化时Co / Fe的升高。

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