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首页> 外文期刊>Astronomy and astrophysics >Using Galactic Cepheids to verify Gaia parallaxes
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Using Galactic Cepheids to verify Gaia parallaxes

机译:使用银河系造父变星验证盖亚视差

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Context. The Gaia satellite will measure highly accurate absolute parallaxes of hundreds of millions of stars by comparing the parallactic displacements in the two fields of view of the optical instrument. The requirements on the stability of the “basic angle” between the two fields are correspondingly strict, and possible variations (on the microarcsec level) are therefore monitored by an on-board metrology system. Nevertheless, since even very small periodic variations of the basic angle might cause a global offset of the measured parallaxes, it?is important to find independent verification methods. Aims. We investigate the potential use of Galactic Cepheids as standard candles for verifying the Gaia parallax zero point. Methods. We simulate the complete population of Galactic Cepheids and their observations by Gaia. Using the simulated data, simultaneous fits are made of the parameters of the period–luminosity relation and a global parallax zero point. Results. The total number of Galactic Cepheids is estimated at about?20?000, of?which nearly half could be observed by Gaia. In?the most favourable circumstances, including negligible intrinsic scatter and extinction errors, the determined parallax zero point has an uncertainty of?0.2?microarcsec. With more realistic assumptions the uncertainty is several times larger, and the result is very sensitive to errors in the applied extinction corrections. Conclusions. The use of Galactic Cepheids alone will not be sufficient to determine a possible parallax zero-point error to the full potential systematic accuracy of Gaia. The global verification of Gaia parallaxes will most likely depend on a combination of many different methods, including this?one.
机译:上下文。盖亚卫星将通过比较光学仪器两个视场中的视差位移,来测量数亿颗恒星的高精度绝对视差。对两个场之间“基本角”的稳定性的要求相对严格,因此,可能的变化(在微弧度上)由车载测量系统监控。然而,由于即使很小的基本角度周期性变化也可能导致所测量视差的整体偏移,因此找到独立的验证方法很重要。目的我们调查了银河系造父变星作为标准蜡烛在验证盖亚视差零点方面的潜在用途。方法。我们模拟了盖亚造父变星的完整种群及其观测。使用模拟数据,同时拟合了周期-亮度关系和全局视差零点的参数。结果。银河系造父变星的总数估计约为20 000,其中盖亚可以观测到近一半。在最有利的情况下,包括可忽略的固有散射和消光误差,确定的视差零点的不确定度为0.2微弧秒。在更现实的假设下,不确定性要大几倍,并且结果对所应用的消光校正中的误差非常敏感。结论。仅使用银河系造父变星不足以确定可能的视差零点误差到Gaia的全部潜在系统精度。盖亚视差的全球验证很可能取决于许多不同方法的组合,包括其中之一。

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