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Experimental MgI oscillator strengths and radiative lifetimes for astrophysical applications on metal-poor stars - New data for the MgI b triplet

机译:实验性mgI振荡器强度和金属贫乏恒星天体物理应用的辐射寿命 - mgI b三重态的新数据

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摘要

Context. The stellar abundance ratio of Mg/Fe is an important tool in diagnostics of galaxy evolution. In order to make reliable measurements of the Mg abundance of stars, it is necessary to have accurate values for the oscillator strength (f- value) of each of the observable transitions. In metal-poor stars the MgI 3p-4s triplet around 5175 angstrom (Fraunhofer's so-called b lines) are the most prominent magnesium lines. The lines also appear as strong features in the solar spectrum. ududAims. We present new and improved experimental oscillator strengths for the optical MgI 3p-4s triplet, along with experimental radiative lifetimes for six terms in Mg I. With these data we discuss the implications on previous and future abundance analyses of metal-poor stars. ududMethods. The oscillator strengths have been determined by combining radiative lifetimes with branching fractions, where the radiative lifetimes are measured using the laser induced fluorescence technique and the branching fractions are determined using intensity calibrated Fourier Transform (FT) spectra. The FT spectra are also used for determining new accurate laboratory wavelengths for the 3p-4s transitions. ududResults. The f-values of the MgI 3p-4s lines have been determined with an absolute uncertainty of 9%, giving an uncertainty of +/- 0.04 dex in the log g f values. Compared to values previously used in abundance analyses of metal-poor stars, rescaling to the new values implies an increase of typically 0.04 dex in the magnesium abundance.
机译:上下文。 Mg / Fe的恒星丰度比是诊断星系演化的重要工具。为了对恒星的Mg丰度进行可靠的测量,有必要为每个可观察到的跃迁的振荡器强度(f值)提供准确的值。在金属贫乏的恒星中,MgI 3p-4s三重态约5175埃(Fraunhofer的b线)是最突出的镁线。这些线在太阳光谱中也表现为强特征。 ud ud目的。我们介绍了光学MgI 3p-4s三重态的新的和改进的实验振荡器强度,以及Mg I中六项的实验辐射寿命。利用这些数据,我们讨论了对以前和将来对贫金属恒星的丰度分析的影响。 ud udMethods。通过将辐射寿命与分支分数结合来确定振荡器的强度,其中辐射寿命使用激光诱导荧光技术测量,而分支分数使用强度校准的傅立叶变换(FT)光谱确定。 FT光谱还用于确定3p-4s跃迁的新的准确实验室波长。 ud ud结果。确定MgI 3p-4s谱线的f值的绝对不确定度为9%,对数g f值的不确定度为+/- 0.04 dex。与以前在贫金属恒星的丰度分析中使用的值相比,重新缩放为新值意味着镁丰度通常增加0.04 dex。

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