首页> 外文期刊>Publications of the Astronomical Society of the Pacific >LOLAS-2: Redesign of an Optical Turbulence Profiler with High Altitude-resolution
【24h】

LOLAS-2: Redesign of an Optical Turbulence Profiler with High Altitude-resolution

机译:LOLAS-2:重新设计具有高海拔分辨率的光学湍流剖面仪

获取原文
获取原文并翻译 | 示例
           

摘要

We present the development, tests, and first results of the second-generation LOLAS-2. This instrument constitutes a strongly improved version of the prototype LOLAS, which is aimed at the measurement of optical turbulence profiles close to the ground, with high altitude-resolution. The method is based on the generalized Scidar principle that consists of taking double-star scintillation images on a defocused pupil plane and calculating in real time the autocovariance of the scintillation. The main components are an open-truss 40-cm Ritchey-Chretien telescope, a German-type equatorial mount, an electron-multiplying CCD camera, and a dedicated acquisition and real-time data-processing software. The new optical design of LOLAS-2 is significantly simplified compared to the prototype. The experiments carried out to test the permanence of the image within the useful zone of the detector and the stability of the telescope focus show that LOLAS-2 can function without the use of the autoguiding and autofocus algorithms that were developed for the prototype version. Optical turbulence profiles obtained with the new LOLAS have the best altitude-resolution ever achieved with Scidar-like techniques (6.3 m). The simplification of the optical layout and the improved mechanical properties of the telescope and mount make of LOLAS-2 a more robust instrument.
机译:我们介绍了第二代LOLAS-2的开发,测试和初步结果。该仪器构成了LOLAS原型的强大改进版本,旨在以高海拔分辨率测量靠近地面的光学湍流剖面。该方法基于广义的Scidar原理,该原理包括在散焦的瞳孔平面上拍摄双星闪烁图像并实时计算闪烁的自协方差。主要组件是40厘米长的开放式Ritchey-Chretien望远镜,德国式赤道仪,电子倍增CCD相机以及专用的采集和实时数据处理软件。与原型相比,LOLAS-2的新光学设计得到了显着简化。为测试图像在检测器有用区域内的永久性以及望远镜焦点的稳定性而进行的实验表明,LOLAS-2可以在不使用针对原型版本开发的自动导引和自动聚焦算法的情况下运行。新型LOLAS所获得的光学湍流剖面具有类似Scidar的技术所能达到的最佳高度分辨率(6.3 m)。 LOLAS-2简化了光学布局,并改善了望远镜和底座的机械性能,使之成为更坚固的仪器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号