论文标题
单个带VLBI绝对天文统计
Single band VLBI absolute astrometry
论文作者
论文摘要
电离层路径延迟会影响单波段非常长的基线干涉法(VLBI)组延迟,从而限制了它们对绝对天体测量法的适用性。我考虑两个重要的情况:当在两个频段同时进行观察时,但是只有一个频段的延迟可用于一部分观察,而当通过设计对一个频段进行观察时。我使用全球导航卫星系统(GNSS)电离层图开发了两种情况的最佳数据分析程序,提供了一个随机模型,描述了电离层误差,并评估了它们对源位置估计的影响。我证明了随机模型在15%的水平上是准确的。我发现,在降低的估计中使用GNSS电离层图引入了严重的偏见,并且我制定了几乎消除它们的程序。我偶然发现GNSS电离层图具有乘法误差,必须按0.85缩放以减轻偏差偏差。与GNSS电离层图相比,发现了类似的量表因子,该量表因卫星高度计的垂直总电子含量比较。我赞成将这种缩放因子解释为电离层薄壳模型不足的表现。我表明,我们能够对电离层路径延迟进行建模,以至于没有明显的系统误差出现,并且我们能够充分评估电离层驱动的随机误差对源位置的贡献。这使得单频绝对天文传统成为可行的选择,可用于确定源位置。
The ionospheric path delay impacts single-band very long baseline interferometry (VLBI) group delays, which limits their applicability for absolute astrometry. I consider two important cases: when observations are made simultaneously at two bands, but delays at only one band are available for a subset of observations and when observations are made at one band by design. I developed optimal procedures of data analysis for both cases using Global Navigation Satellite System (GNSS) ionosphere maps, provided a stochastic model that describes ionospheric errors, and evaluated their impact on source position estimates. I demonstrate that the stochastic model is accurate at a level of 15%. I found that using GNSS ionospheric maps as is introduces serious biases in estimates of declinations and I developed the procedure that almost eliminates them. I found serendipitously that GNSS ionospheric maps have multiplicative errors and have to be scaled by 0.85 in order to mitigate the declination bias. A similar scale factor was found in comparison of the vertical total electron contents from satellite altimetry against GNSS ionospheric maps. I favor interpretation of this scaling factor as a manifestation of the inadequacy of the thin shell model of the ionosphere. I showed that we are able to model the ionospheric path delay to the extent that no noticeable systematic errors emerge and we are able to adequately assess the contribution of the ionosphere-driven random errors on source positions. This makes single-band absolute astrometry a viable option that can be used for source position determination.