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Faint solar analogues at the limit of no reddening

机译:微弱的太阳能类似物处于不发红的极限

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Context. The flux distribution of solar analogues is required for calculating the spectral albedo of solar system bodies such as asteroids and trans-Neptunian objects. Ideally a solar analogue should be comparatively faint as the target of interest, but very few analogues fainter than V = 9 mag have been identified so far. Only atmospheric parameters equal to solar guarantee a flux distribution equal to solar as well, while only photometric colours equal to solar do not. Reddening is also a factor to consider when selecting faint analogue candidates. Aims. Our aim is to implement the methodology for identifying faint analogues at the limit of precision allowed by the current spectroscopic surveys. We quantify the precision attainable for the atmospheric parameters of effective temperature ( T _(eff)), metallicity ([Fe/H]), and surface gravity (log g ) when derived from moderately low-resolution ( R = 8000) spectra with S ∕ N ~ 100. We estimate the significance of reddening at 100–300 pc from the Sun. Methods. We used the less precise photometry in the H IPPARCOS catalogue to select potential analogues with V ~ 10.5 mag (located at ~135 pc). We calibrated T _(eff)and [Fe/H] as functions of equivalent widths of spectral indices by means of the principal component analysis regression. We derived log g , mass, radius, and age from the atmospheric parameters, Gaia parallaxes, and evolutionary tracks. We evaluated the presence of reddening for the candidates by underestimations of photometric T _(eff)with respect to those derived by spectral indices. These determinations were validated with extinction maps. Results. We obtained the atmospheric parameters T _(eff), [Fe/H], and log g with precision of 97 K, 0.06 dex, 0.05 dex, respectively. From 21 candidates analysed, we identify five solar analogues: HIP 991, HIP 5811, and HIP 69477 have solar parameters within 1 σ errors, and HIP 55619 and HIP 61835 within 2 σ errors. Six other stars have T _(eff)close to solar, but slightly lower [Fe/H]. Our analogues show no evidence of reddening except for four stars, that present E ( B ? V ) ≥ 0.06 mag, translating to at least a 200 K decrease in photometric T _(eff).
机译:上下文。太阳类似物的通量分布是计算太阳系物体(如小行星和海王星天体)的光谱反照率所必需的。理想情况下,应该将太阳模拟物作为目标相对比较微弱,但是到目前为止,几乎没有发现比V = 9 mag更暗的模拟物。只有等于太阳的大气参数才能保证通量分布也等于太阳,而只有光度色等于太阳。选择淡淡的模拟候选时,变红也是要考虑的因素。目的我们的目标是在当前光谱学调查允许的精度范围内实施识别微弱类似物的方法。当从中等分辨率(R = 8000)的低分辨率光谱推导出来时,我们可以量化有效温度(T _(eff)),金属性([Fe / H])和表面重力(log g)的大气参数所能达到的精度。 S ∕ N〜100。我们估计在离太阳100–300 pc时变红的重要性。方法。我们使用H IPPARCOS目录中不太精确的光度法来选择V〜10.5 mag(位于〜135 pc)的潜在类似物。我们通过主成分分析回归将T_(eff)和[Fe / H]校准为等效光谱指数宽度的函数。我们从大气参数,盖亚视差和演化轨迹中得出了log g,质量,半径和年龄。我们通过相对于光谱指数得出的光度T _(eff)的低估来评估候选物的变红情况。通过消光图验证了这些确定。结果。我们分别获得了97 K,0.06 dex,0.05 dex的精度的大气参数T_(eff),[Fe / H]和log g。从分析的21个候选样本中,我们识别出五个太阳能类似物:HIP 991,HIP 5811和HIP 69477的太阳参数在1σ误差以内,HIP 55619和HIP 61835的2σ误差以内。另外六颗恒星的T _(eff)接近太阳,但[Fe / H]略低。我们的类似物没有显示出变红的迹象,除了四颗恒星,其E(B?V)≥0.06 mag,意味着光度T _(eff)至少降低了200K。

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