论文标题

量化Micado近IR成像仪器的预期残留分散体

Quantification of the expected residual dispersion of the MICADO Near-IR imaging instrument

论文作者

Born, J. A. van den, Jellema, W.

论文摘要

Micado是一种用于极大望远镜的近红外成像仪,旨在提供衍射有限的成像和50微弧形($μ$ AS)的星体准确性。 Micado采用大气色散校正器(ADC)来控制点扩散函数(PSF)的色度伸长。我们必须了解校正后的分散和残差,以达到最佳性能。因此,我们确定了需要考虑Micado ADC需要考虑的几种色散来源。首先,我们比较了大气分散的常见模型,以研究这些模型是否适合Micado。我们表明,与大多数观察结果相比,在整个大气中,常见大气模型与整体整合之间的差分分散率小于10 $μ$。然后,我们进行了误差传播分析,以了解大气分散体的不确定性作为大气条件的函数。此外,我们研究了光度颜色对天体性能的影响。尽管在同一视野内恒星之间的差异折射可能很重要,但包含ADC的差异使该效应可以忽略不计。对于Micado而言,我们发现当前的光学设计主导于0.4毫米弧秒(MAS)的剩余分散预算,由于棱镜的定位精度和高达0.15 MAS,由于玻璃和大气层分散特性之间的不匹配而贡献了0.31 MAS。我们在Micado ADC的设计中没有发现用于实现50 $μ$的相对星形准确性的震撼震荡。

MICADO, a near-infrared imager for the Extremely Large Telescope, is being designed to deliver diffraction limited imaging and 50 micro arcsecond ($μ$as) astrometric accuracy. MICADO employs an atmospheric dispersion corrector (ADC) to keep the chromatic elongation of the point spread function (PSF) under control. We must understand the dispersion and residuals after correction to reach the optimum performance. Therefore, we identified several sources of chromatic dispersion that need to be considered for the MICADO ADC. First, we compared common models of atmospheric dispersion to investigate whether these models remain suitable for MICADO. We showed that the differential dispersion between common atmospheric models and integration over the full atmosphere is less than 10 $μ$as for most observations in H-band. We then performed an error propagation analysis to understand the uncertainty in the atmospheric dispersion as a function of atmospheric conditions. In addition, we investigated the impact of photometric color on the astrometric performance. While the differential refraction between stars within the same field of view can be significant, the inclusion of an ADC rendered this effect negligible. For MICADO specifically, we found that the current optomechanical design dominates the residual dispersion budget of 0.4 milli arcseconds (mas), with a contribution of 0.31 mas due to the positioning accuracy of the prisms and up to 0.15 mas due to a mismatch between the dispersive properties of the glass and the atmosphere. We found no showstoppers in the design of the MICADO ADC for achieving 50 $μ$as relative astrometric accuracy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源