论文标题

银河系及其卫星的卫星调查

MOONS Surveys of the Milky Way and its Satellites

论文作者

Gonzalez, O. A., Mucciarelli, A., Origlia, L., Schultheis, M., Caffau, E., Di Matteo, P., Randich, S., Recio-Blanco, A., Zoccali, M., Bonifacio, P., Dalessandro, E., Schiavon, R. P., Pancino, E., Taylor, W., Valenti, E., Rojas-Arriagada, A., Sacco, G., Biazzo, K., Bellazzini, M., Cioni, M. -R. L., Clementini, G., Ramos, R. Contreras, de Laverny, P., Evans, C., Haywood, M., Hill, V., Ibata, R., Lucatello, S., Magrini, L., Martin, N., Nisini, B., Sanna, N., Cirasuolo, M., Maiolino, R., Afonso, J., Lilly, S., Flores, H., Oliva, E., Paltani, S., Vanzi, L.

论文摘要

对银河系和其他本地群体星系的解决恒星种群的研究可以为我们提供化石记录,这些化石记录其在数十亿年的时间标准中,其化学动力和恒星形成历史记录。在银河系及其卫星的银河系组件和恒星系统中,可以解决各个恒星。因此,它们代表了一个独特的实验室,在该实验室中,调查了圆盘和矮/不规则星系的形成和演化背后的过程的细节。 VLT处的卫星代表了有效的红外多对象光谱仪和大量8-m级望远镜的大型组合,该望远镜将品尝银河系密集的中央区域及其卫星的凉爽恒星种群,其卫星,其精确的径向速度,金属层和其他化学物质(其他化学物质)的成熟(请参阅其元素的出现)(请参阅其出现的元素(均为),请参阅其元素(请参阅其元素),并在其上均为该元素(c)。卫星将同时在光学和近红外(0.6-1.8微米)中观察到多达1000个目标。 H带中的高分辨率(R〜19700)设置已设计用于准确确定恒星丰度,例如Alpha,Light,Iron-Peak和中子捕获元素。

The study of resolved stellar populations in the Milky Way and other Local Group galaxies can provide us with a fossil record of their chemo-dynamical and star-formation histories over timescales of many billions of years. In the galactic components and stellar systems of the Milky Way and its satellites, individual stars can be resolved. Therefore, they represent a unique laboratory in which to investigate the details of the processes behind the formation and evolution of the disc and dwarf/irregular galaxies. MOONS at the VLT represents a unique combination of an efficient infrared multi-object spectrograph and a large-aperture 8-m-class telescope which will sample the cool stellar populations of the dense central regions of the Milky Way and its satellites, delivering accurate radial velocities, metallicities, and other chemical abundances for several millions of stars over its lifetime (see Cirasuolo et al., this issue). MOONS will observe up to 1000 targets across a 25-arcminute field of view in the optical and near-infrared (0.6-1.8 micron) simultaneously. A high-resolution (R~19700) setting in the H band has been designed for the accurate determination of stellar abundances such as alpha, light, iron-peak and neutron-capture elements.

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