首页> 外文会议>International Symposium on Photoelectronic Detection and Imaging >Conceptual design of 1.5m aperture vertical collimator assembly with short tube and long focus
【24h】

Conceptual design of 1.5m aperture vertical collimator assembly with short tube and long focus

机译:带有短管和长焦点1.5M光圈垂直准直器组件的概念设计

获取原文

摘要

In order to evaluate and test the image quality of large aperture telescope, the most directly method is adopting the collimator and test the telescope system with full aperture. Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP) commenced developing the large aperture collimator for interferometric and image quality testing of meter scale optical systems under cryogenic, vacuum conditions. The aperture of the collimator which has been on the conceptual design phase is 1.5m diameter, and the optical configuration is Cassegrain, the focus is 50m. The material of reaction bonded Silicon Carbide (RB-SiC) produced by CIOMP will be used as the primary mirror substrate. And the figure accuracy of the primary mirror will be polished better than 15nm (RMS). The collimator will be working in a vacuum chamber and face down vertically to the unit under test. The application requirements, specification requirements, and some key technology are demonstrated and analysed with finite element analysis (FEA) in the paper. The feasibility, error budget, and hazards evaluation of the collimator are fulfilled by the FEA results. It demonstrated that the conceptual design meet the requirements of the 1.5m aperture vertical collimator, and could achieve the high accuracy requirements of the wavefront for the beam of light in the vacuum chamber, which the wavefront error should less than 32nm(RMS). Mechanical alignment errors induced by thermal and structural perturbations are monitored with an auto-focusing system to enable focus compensation. The ambient temperature of the collimator in chamber are controlled allowing testing while the chamber shrouds and test unit are brought to cryogenic temperatures. With the high accuracy of the wavefront, the collimator could test the image resolution, modulation transfer functions (MTFs), point spread functions (PSFs), encircled energy, wavefront error, best focus, etc. for optical systems. And the conceptual design could be consulted to other large aperture collimators.
机译:为了评估和测试大型孔径望远镜的图像质量,最直接的方法正在采用准直器并用全孔径测试望远镜系统。长春光学研究所,精细力学和物理学研究所(CIMOMM)开始在低温,真空条件下开发仪表秤光学系统的干涉和图像质量测试的大型光圈准直器。在概念设计阶段的准直器的光圈直径为1.5米,光学配置是CasseGrain,焦点为50米。通过CIMOMM制备的反应键合碳化硅(RB-SiC)的材料将用作主镜子基材。并且主镜的准确度将优于15nm(RMS)抛光。准直器将在真空室中工作,并垂直地向下朝向被测单元。纸张中的有限元分析(FEA)对应用要求,规格要求和一些关键技术进行了证明和分析。通过FEA结果实现了准直器的可行性,错误预算和危害评估。它表明,概念设计符合1.5M光圈垂直准直器的要求,可以实现真空室中光束光束的高精度要求,波前误差应小于32nm(RMS)。通过自动聚焦系统监测通过热和结构扰动引起的机械对准误差,以实现焦点补偿。控制腔室中的准直器的环境温度允许测试,同时腔室护罩和测试单元带到低温温度。具有高精度的波前,准直器可以测试图像分辨率,调制传递函数(MTF),点扩展功能(PSF),光学系统的环绕能量,波前误差,最佳焦点等。概念设计可以咨询到其他大型孔径准直器。

著录项

相似文献

  • 外文文献
  • 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