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Dome flat-field system for 1.3-m Araki Telescope

机译:1.3米Araki望远镜的半球形平场系统

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We report the system/optics design and performance of the dome flat-field system for the Araki Telescope, a 1.3- m opticalear-infrared telescope at Koyama Astronomical Observatory in Japan. A variety of instruments are attached to the telescope. The optical imager, which is intended to search for exoplanets, requires an illumination flatness within 1% on the focal plane over the 17-arcmin FOV. Illumination flatness at both the pupil plane and the focal plane of the telescope is essential for calibration of the transmittance of the optical system. We devised an optical design for the flat-field system that satisfies illumination flatness at both the focal and pupil planes using the non-sequential ray tracing software LightTools. We considered far-field illumination pattern of the lamps, scattering surface reflectance distribution of the screen, telescope structure, primary/secondary mirrors, and mirror baffles. We achieved a flat illumination distribution of 0.9% at the focal plane. The systems performance was tested by comparison with a cloud-flat frame, which was derived by imaging cloud cover illuminated by city lights. The calibration data for the dome flat-field system agree well with the cloud-flat frame within 1% for the g′ and i′ bands of the imager, but the r0 band data does not meet the requirement (less than or equal to 2). Moreover, various instruments require a focal plane illuminance ranging over three orders of magnitude. We used six high-power (60W) halogen lamps; the output power is remotely controlled by a thyristor-driven dimmer and a bypass circuit to an autotransformer.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们报告了日本Koyama天文台的Araki望远镜(1.3米光学/近红外望远镜)的半球型平场系统的系统/光学设计和性能。望远镜上装有各种仪器。旨在搜寻系外行星的光学成像仪要求焦平面上17arcmin FOV上的照明平坦度在1%以内。望远镜的光瞳平面和焦平面的照明平坦度对于校准光学系统的透射率至关重要。我们设计了一种用于平场系统的光学设计,该光学设计使用非顺序光线跟踪软件LightTools满足了焦平面和瞳孔平面的照明平坦度。我们考虑了灯的远场照明模式,屏幕的散射表面反射率分布,望远镜结构,主/副镜和反射镜挡板。我们在焦平面上实现了0.9%的平面照明分布。通过与平云框架进行比较来测试系统性能,该平云框架是通过对城市灯光照射下的云层进行成像而得出的。圆顶平场系统的校准数据与g&prime的1%以内的平云框架非常吻合;和i′波段,但r0波段数据不满足要求(小于或等于2)。此外,各种仪器需要焦平面照度超过三个数量级。我们使用了六盏大功率(60W)卤素灯;输出功率由晶闸管驱动的调光器和自耦变压器的旁路电路进行远程控制。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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