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The Stagger-grid: A grid of 3D stellar atmosphere models - IV. Limb darkening coefficients

机译:交错网格:3D恒星大气模型网格-IV。肢体变暗系数

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Aims. We compute the emergent stellar spectra from the UV to far infrared for different viewing angles using realistic 3D model atmospheres for a large range in stellar parameters to predict the stellar limb darkening. Methods. We have computed full 3D LTE synthetic spectra based on 3D radiative hydrodynamic atmosphere models from the Stagger-grid in the ranges: Teff from 4000 to 7000 K, log?g from 1.5 to 5.0, and [Fe/H], from ?4.0 to +0.5. From the resulting intensities, we derived coefficients for the standard limb darkening laws considering a number of often-used photometric filters. Furthermore, we calculated theoretical transit light curves, in order to quantify the differences between predictions by the widely used 1D model atmosphere and our 3D models. Results. The 3D models are often found to predict steeper darkening towards the limb compared to the 1D models, mainly due to the temperature stratifications and temperature gradients being different in the 3D models compared to those predicted with 1D models based on the mixing length theory description of convective energy transport. The resulting differences in the transit light curves are rather small; however, these can be significant for high-precision observations of extrasolar transits, and are able to lower the residuals from the fits with 1D limb darkening profiles. Conclusions. We advocate the use of the new limb darkening coefficients provided for the standard four-parameter non-linear power law, which can fit the limb darkening more accurately than other choices.
机译:目的我们使用逼真的3D模型气氛对大范围的恒星参数计算从不同视角的紫外线到远红外的新兴恒星光谱,以预测恒星肢体变黑。方法。我们已根据Stagger-grid的3D辐射流体动力大气模型计算了完整的3D LTE合成光谱,其范围为:Teff从4000至7000 K,log?g从1.5至5.0,[Fe / H]从?4.0至+0.5。从得到的强度中,我们考虑了许多常用的光度过滤器,得出了标准肢体变暗定律的系数。此外,我们计算了理论上的过渡光曲线,以便量化由广泛使用的1D模型环境和3D模型进行的预测之间的差异。结果。与1D模型相比,经常发现3D模型可以预测到肢体更暗,这主要是因为3D模型中的温度分层和温度梯度与基于对流混合长度理论描述的1D模型所预测的温度分层和温度梯度不同。能源运输。瞬态光曲线中产生的差异很小。然而,这些对于高精度的太阳外穿行观测可能非常重要,并且能够降低一维肢体变暗轮廓的拟合残差。结论。我们提倡使用为标准的四参数非线性幂定律提供的新的肢体变暗系数,该系数可以比其他选择更准确地拟合肢体变暗。

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