论文标题
GALAH调查:盖亚系统中红外通量法的有效温度校准
The GALAH survey: effective temperature calibration from the InfraRed Flux Method in the Gaia system
论文作者
论文摘要
为了准确确定恒星特性,对恒星有效温度的了解至关重要。我们在红外通量法中实施了GAIA和2MASS光度法,并将其应用于Galah DR3调查中不同进化阶段的360,000颗恒星。我们得出了颜色有效的温度关系,这些温度关系考虑了4000至8000开尔文(从非常金属贫困的恒星到超级太阳金属度)的金属性和表面重力的影响。这些校准的内部不确定性取决于所用的颜色组合,其内部不确定性为40-80 kelvin。与Solar-Twins,Gaia基准恒星和最新的干涉测量值的比较验证了从F到早期M光谱类型的这些校准的精确性和准确性。我们评估了各种不确定性来源的影响,包括假定的灭绝法,并提供了使用我们关系的指南。还会得出强大的太阳色。
In order to accurately determine stellar properties, knowledge of the effective temperature of stars is vital. We implement Gaia and 2MASS photometry in the InfraRed Flux Method and apply it to over 360,000 stars across different evolutionary stages in the GALAH DR3 survey. We derive colour-effective temperature relations that take into account the effect of metallicity and surface gravity over the range 4000 to 8000 kelvin, from very metal-poor stars to super solar metallicities. The internal uncertainty of these calibrations is of order 40-80 kelvin depending on the colour combination used. Comparison against solar-twins, Gaia benchmark stars and the latest interferometric measurements validates the precision and accuracy of these calibrations from F to early M spectral types. We assess the impact of various sources of uncertainties, including the assumed extinction law, and provide guidelines to use our relations. Robust solar colours are also derived.