首页> 外文会议>Conference on Optical and Infrared Detectors for Astronomy; 20040621-20040622; Glasgow; GB >Curved CCD Detector Devices and Arrays for Multi-Spectral Astrophysical Applications and Terrestrial Stereo Panoramic Cameras
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Curved CCD Detector Devices and Arrays for Multi-Spectral Astrophysical Applications and Terrestrial Stereo Panoramic Cameras

机译:用于多光谱天体应用和地面立体全景相机的弯曲CCD检测器设备和阵列

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The emergence of curved CCD detectors as individual devices or as contoured mosaics assembled to match the curved focal planes of astronomical telescopes and terrestrial stereo panoramic cameras represents a major optical design advancement that greatly enhances the scientific potential of such instruments. In altering the primary detection surface within the telescope's optical instrumentation system from flat to curved, and conforming the applied CCD's shape precisely to the contour of the telescope's curved focal plane, a major increase in the amount of transmittable light at various wavelengths through the system is achieved. This in turn enables multi-spectral ultra-sensitive imaging with much greater spatial resolution necessary for large and very large telescope applications, including those involving infrared image acquisition and spectroscopy, conducted over very wide fields of view. For earth-based and space-borne optical telescopes, the advent of curved CCD's as the principle detectors provides a simplification of the telescope's adjoining optics, reducing the number of optical elements and the occurrence of optical aberrations associated with large corrective optics used to conform to flat detectors. New astronomical experiments may be devised in the presence of curved CCD applications, in conjunction with large format cameras and curved mosaics, including three dimensional imaging spectroscopy conducted over multiple wavelengths simultaneously, wide field real-time stereoscopic tracking of remote objects within the solar system at high resolution, and deep field survey mapping of distant objects such as galaxies with much greater multi-band spatial precision over larger sky regions. Terrestrial stereo panoramic cameras equipped with arrays of curved CCD's joined with associative wide field optics will require less optical glass and no mechanically moving parts to maintain continuous proper stereo convergence over wider perspective viewing fields than their flat CCD counterparts, lightening the cameras and enabling faster scanning and 3D integration of objects moving within a planetary terrain environment. Preliminary experiments conducted at the Sarnoff Corporation indicate the feasibility of curved CCD imagers with acceptable electro-optic integrity. Currently, we are in the process of evaluating the electro-optic performance of a curved wafer scale CCD imager. Detailed ray trace modeling and experimental electro-optical data performance obtained from the curved imager will be presented at the conference.
机译:弯曲CCD检测器的出现是作为单个设备或为匹配天文望远镜和地面立体全景相机的弯曲焦平面而组装的轮廓马赛克,这代表了光学设计的一项重大进步,极大地增强了此类仪器的科学潜力。在将望远镜的光学仪器系统中的主要检测表面从平面更改为弯曲,并使所应用的CCD形状精确地与望远镜的弯曲焦平面轮廓相吻合时,通过系统的各种波长的可透射光量将大大增加实现。反过来,这使得多光谱超灵敏成像具有更大的空间分辨率,这对于大型和超大型望远镜应用都是必要的,包括在非常宽的视野范围内进行的红外图像采集和光谱学应用。对于地基和星载光学望远镜,弯曲CCD作为主要检测器的出现简化了望远镜的相邻光学元件,减少了光学元件的数量,并减少了与用于校正的大型校正光学元件相关的光学像差的发生。平板探测器。在曲面CCD应用,大型相机和曲面马赛克的结合下,可以设计出新的天文实验,包括同时在多个波长上进行的三维成像光谱,对太阳系内遥远物体的宽视场实时立体跟踪。高分辨率,以及对远距离物体(例如星系)的深场调查制图,在更大的天空区域上具有更高的多波段空间精度。与平面CCD对应镜头相比,配备有弯曲CCD阵列和相关联的广角光学元件的地面立体全景相机将需要较少的光学玻璃,并且不需要机械移动的部件即可在更宽的视角范围内保持连续的正确的立体会聚,从而减轻了相机的负担,以及在地球地形环境中移动的物体的3D集成。在Sarnoff公司进行的初步实验表明,弯曲CCD成像器具有可接受的电光完整性的可行性。当前,我们正在评估曲面晶圆规模CCD成像器的电光性能。从曲面成像仪获得的详细的射线迹线建模和实验电光数据性能将在会议上介绍。

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