论文标题
图像量表校准技术的比较:已知对,漂移扫描和光圈光栅
Comparison of Image Scale Calibration Techniques: Known Pairs, Drift Scans and Aperture Grating
论文作者
论文摘要
我们比较了几种技术,用于校准宽(> 1 Arcsec)对之间的角度分离。这些技术是(i)使用αCENAB轨道参数的参考对校准,(ii)视频漂移方法,以及(iii)使用不同通带的红色过滤器的孔径衍射光栅的利用。使用这些3个校准技术确定了62对的分离并进行了比较。发现αCENAB和视频漂移方法很好地一致。 The use of the grating and filter (by measuring fringe spacing) proved unsatisfactory for the broad-band filters, and the use of a narrow band Hα filter with the grating, resulted in image scales that differed from those obtained using α Cen AB reference pair calibration and the video drift method by 0.024 and 0.031 pixel/arcsec (px/arcsec) respectively. Hα滤波器和光栅的Fraunhofer衍射的更完整的建模产生了0.009 PX/ARCSEC的图像量表差异。 对分离的衍射光栅方法的偏差约为0.1%,也揭示了自己,无法解释。我们得出的结论是,针对已知对的校准,其分离和PA以高精度为单位可能是进行图像尺度校准的最简单和最佳方法。
We compared several techniques for calibrating angular separation between wide (>1 arcsec) pairs. These techniques are (i) reference pair calibration using α Cen AB orbital parameters, (ii) the video drift method, and (iii) the utilisation of an aperture diffraction grating with red filters of different passbands. Separations of 62 pairs were determined using these 3 calibration techniques and compared. It was found that α Cen AB and video drift methods are in good agreement. The use of the grating and filter (by measuring fringe spacing) proved unsatisfactory for the broad-band filters, and the use of a narrow band Hα filter with the grating, resulted in image scales that differed from those obtained using α Cen AB reference pair calibration and the video drift method by 0.024 and 0.031 pixel/arcsec (px/arcsec) respectively. A more complete modelling of Fraunhofer diffraction of the Hα filter and grating produced a difference in image scale of 0.009 px/arcsec. A bias in the diffraction grating method of ~0.1% in the separation of pairs also revealed itself and could not be accounted for. We conclude that calibration against a known pair for which the separation and PA is known with high precision is probably the simplest and best way to undertake image scale calibration.