论文标题

遥远太阳能双胞胎(SDST)的调查-II。设计,观察和数据

Survey for Distant Solar Twins (SDST) -- II. Design, observations and data

论文作者

Liu, Fan, Murphy, Michael T., Lehmann, Christian, Flynn, Chris, Smith, Daniel, Kos, Janez, Berke, Daniel A., Martell, Sarah L.

论文摘要

对太阳能双胞胎的研究对天文学界有关键的影响,但在过去的几十年中,已可靠地确定了附近的$ 100--200太阳能双胞胎($ <$ 1 kpc)。我们的调查的目的是确定$ \ sim $ 150--200遥远的太阳能双胞胎和类似物(最高$ \ lyssim $ 4 kpc),更靠近银河中心。我们利用精确的盖亚和Skymapper调查来选择2度领域的太阳样候选者,这在盎格鲁 - 澳大利亚望远镜上的爱马仕光谱仪观察到。我们成功地建立了所需的信号噪声比(爱马仕红色带中的25个像素),大多数目标像17.4 mag的Gaia G一样微弱。本文中得出了我们候选者的恒星光度法/天文参数(例如,\ teff,\ logg,mass),而光谱参数将在此SDST系列的第三篇论文中介绍。从模拟调查数据和Besançon恒星种群模型估算了选择成功率 - 属于太阳能双胞胎或类似物的目标的比例,并与调查的实际成功率进行了比较。我们发现,预期和实际的成功率很好,表明我们在SDST中发现的太阳能双胞胎和类似物的数量与期望一致,从而确认了调查方法。这些遥远的太阳能类似物是测试较高暗物质密度区域电磁强度的任何变化的主要目标,并且可以为我们对内部银河系中的银河化学演化做出额外的贡献。

Studies of solar twins have key impacts on the astronomical community, but only $\sim$100--200 nearby solar twins ($<$ 1 kpc) have been reliably identified over the last few decades. The aim of our survey (SDST) is to identify $\sim$150--200 distant solar twins and analogues (up to $\lesssim$ 4 kpc) closer to the Galactic Centre. We took advantage of the precise Gaia and Skymapper surveys to select Sun-like candidates in a 2-degree field, which were observed with the HERMES spectrograph on the Anglo-Australian Telescope. We successfully built up the required signal-to-noise ratio (25-per-pixel in the HERMES red band) for most targets as faint as Gaia G of 17.4 mag. The stellar photometric/astrometric parameters (e.g., \teff, \logg, mass) of our candidates are derived in this paper, while the spectroscopic parameters will be presented in the third paper in this SDST series. The selection success rate - the fraction of targets which belong to solar twins or analogues - was estimated from simulated survey data and the Besançon stellar population model, and compared with the actual success rate of the survey. We find that expected and actual success rates agree well, indicating that the numbers of solar twins and analogues we discover in SDST are consistent with expectations, affirming the survey approach. These distant solar analogues are prime targets for testing for any variation in the strength of electromagnetism in regions of higher dark matter density, and can make additional contributions to our understanding of, e.g., Galactic chemical evolution in the inner Milky Way.

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