论文标题
银河重力场对乳肠外源位置准确性的影响。 II观察性出现和可检测性
Influence of the Galactic gravitational field on the positional accuracy of extragalactic sources. II Observational appearances and detectability
论文作者
论文摘要
我们认为由于银河重力场的局部波动而导致遥远来源的明显天体位置的抖动效应的可能性。提议使用高精度无线电干涉法观察到不同天空方向的两个样本(目标和对照)。结果表明,在〜2年的尺度上,与控制源的标准偏差相比,与控制源的标准偏差相比,如果差异差异观测的准确性约为10 $μ$,则可以检测到目标源的标准偏差。对于在KVN或VERA干涉仪上达到的30 $μ$的当前最新准确性,与VLBI相比,基线较短,目标和控制样品仅在10年的规模上以2 $σ$级别的差异。为了在此时间间隔上实现$3σ$级别,有必要提高最高约20 $μ$的准确性。讨论了两个可能影响两个源之间的电弧长度测量值的其他可能效果,并提出了将它们最小化的观察策略。
We consider a possibility of detecting the jitter effect of apparent celestial positions of distant sources due to local fluctuations of the Galaxy gravitational field. It is proposed to observe two samples of extragalactic sources (target and control) in different sky directions using the high-precision radio interferometry. It is shown that on a scale of ~2 years, it is possible to detect a systematic increase in the standard deviation of measured arc lengths of pairs of target sources compared to the control ones at the $3σ$-level if the accuracy of differential astrometric observations is around 10 $μ$as. For the current state-of-the-art accuracy of 30 $μ$as achieved at the KVN or VERA interferometers, which have shorter baselines in comparison with VLBI, the target and control samples will differ only at the 2$σ$-level on the scale of 10 years. To achieve the $3σ$-level on this time interval, it is necessary to improve the accuracy up to ~20 $μ$as. Other possible effects that can also affect the arc length measurements between two sources are discussed, and an observational strategy to minimize them is suggested.