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Flattening scientific CCD imaging data with a dome flat-field system

机译:使用半球形平场系统对科学CCD成像数据进行展平

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We describe the flattening of scientific CCD imaging data using a dome flat-field system. The system uses light emitting diodes (LEDs) to illuminate a carefully constructed dome flat-field screen. LEDs have several advantages over more traditional illumination sources: they are available in a wide range of output wavelengths, are inexpensive, have a very long source lifetime, and are straightforward to control digitally. The circular dome screen is made of a material with Lambertian scattering properties that efficiently reflects light of a wide range of wavelengths and incident angles. In this paper, we compare flat fields obtained using this system with two types of traditionally-constructed flat fields: Twilight sky flats and nighttime sky flats. Using photometric standard stars as illumination sources, we test the quality of each flat field by applying it to a set of standard star observations.We find that the dome flat-field system produces flat fields that are superior to twilight or nighttime sky flats, particularly for photometric calibration. We note that a ratio of the twilight sky flat to the nighttime sky flat is flat to within the expected uncertainty; but since both of these flat fields are inferior to the dome flat, this common test is not an appropriate metric for testing a flat field. Rather, the only feasible and correct method for determining the appropriateness of a flat field is to use standard stars to measure the reproducibility of known magnitudes across the detector.
机译:我们描述了使用圆顶平场系统对科学CCD成像数据进行展平。该系统使用发光二极管(LED)照亮精心构造的圆顶平场屏幕。与传统照明光源相比,LED具有多个优势:它们可用于多种输出波长,价格便宜,光源寿命长且易于数字控制。圆形圆顶屏幕由具有朗伯散射特性的材料制成,可有效反射各种波长和入射角的光。在本文中,我们将使用该系统获得的平坦场与两种传统构造的平坦场进行比较:暮色天空舱和夜间天空舱。我们使用光度标准恒星作为照明源,通过将其应用于一组标准恒星观测值来测试每个平场的质量,我们发现圆顶平场系统产生的平场优于暮光或夜间天平,特别是用于光度校准。我们注意到,黄昏的平坦天空与夜晚的平坦天空之比保持在预期的不确定性范围内;但是由于这两个平坦场均不如圆顶平坦,因此此通用测试不适用于测试平坦场。相反,确定平场合适性的唯一可行且正确的方法是使用标准星号来测量整个探测器上已知幅度的可重复性。

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