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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >Velocity and abundance precisions for future high-resolution spectroscopic surveys: A study for 4MOST
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Velocity and abundance precisions for future high-resolution spectroscopic surveys: A study for 4MOST

机译:未来高分辨率光谱学调查的速度和丰度精度:4MOST研究

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In preparation for future, large-scale, multi-object, high-resolution spectroscopic surveys of the Galaxy, we present a series of tests of the precision in radial velocity and chemical abundances that any such project can achieve at a 4 m class telescope. We briefly discuss a number of science cases that aim at studying the chemo-dynamical history of the major Galactic components (bulge, thin and thick disks, and halo) - either as a follow-up to the Gaia mission or on their own merits. Based on a large grid of synthetic spectra that cover the full range in stellar parameters of typical survey targets, we devise an optimal wavelength range and argue for a moderately high-resolution spectrograph. As a result, the kinematic precision is not limited by any of these factors, but will practically only suffer from systematic effects, easily reaching uncertainties <1km s~(-1). Under realistic survey conditions (namely, considering stars brighter than r = 16 mag with reasonable exposure times) we prefer an ideal resolving power of R ~20 000 on average, for an overall wavelength range (with a common two-arm spectrograph design) of [395;456.5] nm and [587;673] nm. We show for the first time on a general basis that it is possible to measure chemical abundance ratios to better than 0.1 dex for many species (Fe, Mg, Si, Ca, Ti, Na, Al, V, Cr, Mn, Co, Ni, Y, Ba, Nd, Eu) and to an accuracy of about 0.2 dex for other species such as Zr, La, and Sr. While our feasibility study was explicitly carried out for the 4MOST facility, the results can be readily applied to and used for any other conceptual design study for high-resolution spectrographs.
机译:为准备将来对银河系进行的大规模,多目标,高分辨率光谱学调查,我们提出了一系列径向速度和化学丰度精度的测试,任何此类项目在4 m级望远镜上都可以达到。我们简要讨论了一些旨在研究银河主要成分(凸起,薄,厚的磁盘和光晕)的化学动力学历史的科学案例-作为对Gaia任务的后续行动,也可以根据自身情况进行。基于涵盖典型调查目标恒星参数整个范围的大型合成光谱网格,我们设计了最佳波长范围,并提出了中等分辨率的光谱仪。结果,运动精度不受任何这些因素的限制,但实际上只会受到系统性影响,容易达到<1km s〜(-1)的不确定性。在现实的测量条件下(即考虑到在合理的曝光时间下,恒星比r = 16 mag更亮),对于整个波长范围(使用普通的两臂光谱仪设计),我们更希望平均分辨力为R〜20000。 [395; 456.5] nm和[587; 673] nm。我们首次在总体上表明,许多物种(Fe,Mg,Si,Ca,Ti,Na,Al,V,Cr,Mn,Co, Ni,Y,Ba,Nd,Eu),对于其他物种(例如Zr,La和Sr)的精确度约为0.2 dex。尽管我们对4MOST设施进行了可行性研究,但可以轻松地将结果应用于并用于高分辨率光谱仪的任何其他概念设计研究。

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