论文标题
15 \ textit {k} 2个广告系列:I。Lamost DR6的低分辨率光谱
LAMOST Observations in 15 \textit{K}2 Campaigns: I. Low resolution spectra from LAMOST DR6
论文作者
论文摘要
lamost- \ textIt {k} 2(l \ textit {k} 2)项目于2015年启动,旨在在\ textit {k} 2活动中收集目标的低分辨率光谱,类似于lamost- \ textit- \ textit {kepler}项目。到2018年底,Lamost观察到了总共126 l \ textit {k} 2板。在与\ textIt {k} 2批准的目标的Lamost Data Release 6(DR6)的目录进行了交叉匹配之后,我们发现了160,619个可用的光谱为84,012个对象,其中大多数对象已被观察到不止一次。通过Lamost Stellar参数管道(LASP)得出了70,895个物体的有效温度,表面重力,金属性和径向速度,从129,974光谱中进行70,895个物体。内部不确定性估计分别为81 K,0.15 DEX,0.09 DEX和5 kms $^{ - 1} $,当时是从$ g $ band $ band(Snr $ _g $)中信噪比的频谱中得出的10个。这些估计是基于多次访问的目标的结果。通过比较与脱吉和盖亚调查的共同目标来评估外部精度,我们通常会发现线性关系。提供了最终的校准,分别为巨人和矮人组合了外部和内部不确定性。我们预见,这些光谱数据将在不同的研究领域中广泛使用,尤其是与\ textit {k} 2光度法结合使用。
The LAMOST-\textit{K}2 (L\textit{K}2) project, initiated in 2015, aims to collect low-resolution spectra of targets in the \textit{K}2 campaigns, similar to LAMOST-\textit{Kepler} project. By the end of 2018, a total of 126 L\textit{K}2 plates had been observed by LAMOST. After cross-matching the catalog of the LAMOST data release 6 (DR6) with that of the \textit{K}2 approved targets, we found 160,619 usable spectra of 84,012 objects, most of which had been observed more than once. The effective temperature, surface gravity, metallicity, and radial velocity from 129,974 spectra for 70,895 objects are derived through the LAMOST Stellar Parameter Pipeline (LASP). The internal uncertainties were estimated to be 81 K, 0.15 dex, 0.09 dex and 5 kms$^{-1}$, respectively, when derived from a spectrum with a signal-to-noise ratio in the $g$ band (SNR$_g$) of 10. These estimates are based on results for targets with multiple visits. The external accuracies were assessed by comparing the parameters of targets in common with the APOGEE and GAIA surveys, for which we generally found linear relationships. A final calibration is provided, combining external and internal uncertainties for giants and dwarfs, separately. We foresee that these spectroscopic data will be used widely in different research fields, especially in combination with \textit{K}2 photometry.