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A Simple concept for Atmospheric Dispersion Correctors on-sky commissioning tests

机译:天空调试测试的大气分散校正的简单概念

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Differential atmospheric dispersion, due to the wavelength-dependent index of refraction of the atmosphere, will affect ground based observations. In order to correct this effect, the usage of an Atmospheric Dispersion Corrector (ADC) is fundamental. Insufficient, or wrong correction of the atmospheric dispersion, will produce a spectrally elongated shape instead of a circular white one for the observed target. The commissioning tests of ADCs with on-sky observations are not an easy task. In fact, the residual dispersion is expected to be of a few tens of milliarcsec, where the object for a seeing limited telescope is almost 1 arcsec. A procedure was developed, based on ellipse fitting of several cuts from the guiding camera images. The characterization of the data allows the validation of the ADCs alignment by determining the dispersion direction and by minimizing the ellipticity. The procedure was tested on ESPRESSO using the guiding camera images, and was able to correct a small error of a few degrees in the ADC prism alignment that was not possible to infer by other means.
机译:由于大气层的波长依赖性指数,差分大气分散,将影响基于地面的观察结果。为了纠正这种效果,大气分散校正器(ADC)的使用是基本的。对于大气分散体的校正不足或错误的校正,将产生光谱伸长的形状,而不是用于观察到的靶的圆形白色。具有在天空观测的ADC的调试测试并不是一项简单的任务。事实上,剩余的分散预计将是几十毫玛丽亚克,其中望远镜的物体几乎是1个弧度。基于从引导相机图像的几个切口的椭圆拟合,开发了一个程序。数据的表征允许通过确定分散方向并通过最小化椭圆度来验证ADCS对齐。使用引导相机图像对浓缩咖啡进行测试,并且能够在ADC棱镜对准中校正几度的小误差,这是不可能通过其他方式推断。

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