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首页> 外文期刊>The Astrophysical journal >THE SENSITIVITY OF CONVECTION ZONE DEPTH TO STELLAR ABUNDANCES: AN ABSOLUTE STELLAR ABUNDANCE SCALE FROM ASTEROSEISMOLOGY
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THE SENSITIVITY OF CONVECTION ZONE DEPTH TO STELLAR ABUNDANCES: AN ABSOLUTE STELLAR ABUNDANCE SCALE FROM ASTEROSEISMOLOGY

机译:对流区深度对星体丰度的敏感性:来自星震学的绝对星体丰度标度

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The base of the convection zone (CZ) is a source of acoustic glitches in the asteroseismic frequency spectra of solar-like oscillators, allowing one to precisely measure the acoustic depth to the feature. We examine the sensitivity of the depth of the CZ to mass, stellar abundances, and input physics, and in particular, the use of a measurement of the acoustic depth to the CZ as an atmosphere-independent, absolute measure of stellar metallicities. We find that for low-mass stars on the main sequence with 0.4 M ☉ ≤ M ≤ 1.6 M ☉, the acoustic depth to the base of the CZ, normalized by the acoustic depth to the center of the star, τcz, n , is both a strong function of mass, and varies at the 0.5%-1% per 0.1?dex level in [Z/X], and is therefore also a sensitive probe of the composition. We estimate the theoretical uncertainties in the stellar models and show that combined with reasonable observational uncertainties we can expect to measure the metallicity to within 0.15-0.3?dex for solar-like stars. We discuss the applications of this work to rotational mixing, particularly in the context of the observed mid-F star Li dip, and to distinguishing between different mixtures of heavy elements.
机译:对流区(CZ)的底部是类太阳能振荡器的震震频谱中的声波干扰源,使人们可以精确地测量该特征的声波深度。我们研究了CZ深度对质量,恒星丰度和输入物理学的敏感性,尤其是对CZ的声深的测量作为独立于大气的恒星金属性绝对度量的使用。我们发现,对于主序上质量为0.4 M☉≤M≤1.6 M stars的低质量恒星,到CZ底部的声深(由到恒星中心的声深τcz,n归一化)为它不仅具有强大的质量功能,而且在[Z / X]中每0.1?dex水平在0.5%-1%之间变化,因此也是该组合物的灵敏探针。我们估计了恒星模型中的理论不确定性,并表明,结合合理的观测不确定性,我们可以期望将太阳星等恒星的金属度测量为0.15-0.3?dex。我们讨论了这项工作在旋转混合中的应用,特别是在观测到的中F星Li倾角的背景下,以及在重元素的不同混合物之间进行区分的讨论。

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