论文标题

GAIA-ESO调查:单线光谱二进制的检测和表征

The Gaia-ESO Survey: detection and characterization of single line spectroscopic binaries

论文作者

Merle, T., Van der Swaelmen, M., Van Eck, S., Jorissen, A., Jackson, R. J., Traven, G., Zwitter, T., Pourbaix, D., Klutsch, A., Sacco, G., Blomme, R., Masseron, T., Gilmore, G., Randich, S., Badenes, C., Bayo, A., Bensby, T., Bergemann, M., Biazzo, K., Damiani, F., Feuillet, D., Frasca, A., Gonneau, A., Jeffries, R. D., Jofré, P., Morbidelli, L., Mowlavi, N., Pancino, E., Prisinzano, L.

论文摘要

最近和正在进行的大型地面多对象光谱调查可以显着增加光谱二进制的样本,以深入了解其统计特性。我们研究了GAIA-ESO调查(GES)内部数据版本5的重复光谱观察结果,以识别和表征具有一个可见分量(SB1)的光谱二进制物(SB1),该田地涵盖了圆盘,凸起,Corot场,Corot场和恒星插图和恒星簇和关联。对大约43500星的IDR5子样本的光谱进行了统计CHI2检验,这些恒星的特征在于至少2个观测值和一个S/N> 3。我们的RV变量样本使用GAIA DR2 Parallaxes和Photommometry和对流诱导的变量通过脉动/对流诱导的变量进行污染清洁。使用光谱轨道的SB9目录的蒙特卡洛模拟可以估计我们的检测效率并纠正SB1速率,以评估GES SB1二元分数及其依赖性及其依赖性,并具有有效的温度和金属性。我们发现641(分别为803)FGK SB1在5个Sigma(分别为3 sigma)水平上。轨道周期分布是从RV标准差异分布中估算的,并揭示了带有log(p [d])<4的SB1探针二进制物<4。我们估计,典型的不确定性为4%,估计全局GES SB1分数在7-14%的范围内为7-14%。 GES SB1频率在金属度范围内以-9 +/- 3%/DEX的速率-2.7 <feH <+0.6时降低。在涵盖光谱类型的FGK和大量金属范围的均匀样品上,置信水平高于93%,获得了这种反相关。当考虑到当前的质量函数时,该速率变为4 +/- 2%/DEX,置信度高于88%。此外,我们为F,G和K光谱类型以及矮和巨型初选提供了SB1分数的变化。

Recent and on-going large ground-based multi-object spectroscopic surveys allow to significantly increase the sample of spectroscopic binaries to get insight into their statistical properties. We investigate the repeated spectral observations of the Gaia-ESO Survey (GES) internal data release 5 to identify and characterize spectroscopic binaries with one visible component (SB1) in fields covering the discs, the bulge, the CoRot fields, and stellar clusters and associations. A statistical chi2-test is performed on spectra of the iDR5 sub-sample of approximately 43500 stars characterized by at least 2 observations and a S/N > 3. Our sample of RV variables is cleaned from contamination by pulsation/convection-induced variables using Gaia DR2 parallaxes and photometry. Monte-Carlo simulations using the SB9 catalogue of spectroscopic orbits allow to estimate our detection efficiency and to correct the SB1 rate to evaluate the GES SB1 binary fraction and its dependence with effective temperature and metallicity. We find 641 (resp., 803) FGK SB1 candidates at the 5 sigma (resp., 3 sigma) level. The orbital-period distribution is estimated from the RV standard-deviation distribution and reveals that the detected SB1 probe binaries with log(P[d]) < 4. We estimate the global GES SB1 fraction to be in the range 7-14% with a typical uncertainty of 4%. The GES SB1 frequency decreases with metallicity at a rate of -9+/-3%/dex in the metallicity range -2.7<FeH<+0.6. This anticorrelation is obtained with a confidence level higher than 93% on a homogeneous sample covering spectral types FGK and a large range of metallicities. When the present-day mass function is accounted for, this rate turns to 4+/-2%/dex with a confidence level higher than 88%. In addition we provide the variation of the SB1 fraction with metallicity separately for F, G, and K spectral types, as well as for dwarf and giant primaries.

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