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Selection of in-flight flat-field calibration dither pattern for the Solar Disk Imager of the Lyman-alpha Solar Telescope

机译:选择在Lyman-Alpha太阳能望远镜的太阳能磁盘成像仪的飞行飞行平面校准抖动图案

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The Solar Disk Imager (SDI), one of the instruments of the Lyman-alpha Solar Telescope (LST), aims to obtain full-disk images of the Sun in the Lyman-alpha waveband with high spatial and temporal resolution. In order to obtain high quality scientific data, various calibrations (including dark current, flat-field, radiometry, optical geometry, etc.) are required both on ground and in-flight. As other solar imagers, the flat-field calibration of SDI generally adopts the so-called KLL method to derive the flat-field from a set of relatively displaced non-uniform solar images. The KLL method is suitable for flat-field calibration of telescopes working in white light and infrared wavebands. When the working wavelength is extended to ultraviolet (UV) or extreme ultraviolet (EUV) wavebands, many difficulties and uncertainties reduce the accuracy of the obtained flat-field. We use images taken by the Atmospheric Imaging Assembly (AIA) to simulate the input images for the flat-field computations with the KLL algorithm and different dither patterns to find a suitable one for the in-flight flat-field calibration of SDI. Our results show that a circular dither pattern with 21 offset positions properly arranged and images with reduced spatial resolution down to about 15" allow us to obtain flat-fields with required accuracy of 2% of SDI.
机译:太阳能磁盘成像器(SDI)是Lyman-alpha太阳能望远镜(LST)的仪器之一,旨在在Lyman-alpha波段中获得阳光的全磁盘图像,具有高空间和时间分辨率。为了获得高质量的科学数据,在地面和飞行中,需要各种校准(包括暗电流,平局,辐射,光学几何等)。作为其他太阳能成像器,SDI的平场校准通常采用所谓的KLL方法来导出来自一组相对流离失所的非均匀太阳能图像的平面。 KLL方法适用于在白光和红外波段工作的望远镜的平场校准。当工作波长延伸到紫外(UV)或极端紫外(EUV)波段时,许多困难和不确定性降低了所获得的平场的精度。我们使用大气成像组件(AIA)拍摄的图像来模拟具有KLL算法的平现场计算的输入图像和不同的抖动图案,以找到适用于SDI的飞行飞行平局校准的图像。我们的结果表明,具有21个偏移位置的圆形抖动图案,其适当地布置和下降到约15的空间分辨率降低的图像使我们能够获得所需精度的SDI所需精度的平坦场。

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