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Active optics and modified-Rumsey wide-field telescopes: MINITRUST demonstrators with vase- and tulip-form mirrors

机译:主动光学元件和改良的拉姆西宽视场望远镜:带花瓶和郁金香形镜子的MINITRUST演示器

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Wide-field astronomy requires the development of larger aperture telescopes. The optical properties of a three-mirror modified-Rumsey design provide significant advantages when compared to other telescope designs: (i) at any wavelength, the design has a flat field and is anastigmatic; (ii) the system is extremely compact, i.e., it is almost four times shorter than a Schmidt. Compared to the equally compact flat-field Ritchey-Chretien with a doublet-lens corrector, as developed for the Sloan digital sky survey--and which requires the polishing of six optical surfaces--the proposed modified-Rumsey design requires only a two-surface polishing and provides a better imaging quality. All the mirrors are spheroids of the hyperboloid type. Starting from the classical Rumsey design, it is shown that the use of all eight available free parameters allows the simultaneous aspherization of the primary and tertiary mirrors by active optics methods from a single deformable substrate. The continuity conditions between the primary and the tertiary hyperbolizations are achieved by an intermediate narrow ring of constant thickness that is not optically used. After the polishing of a double vase form in a spherical shape, the primary-tertiary hyperbolizations are achieved by in situ stressing. The tulip-form secondary is hyperbolized by stress polishing. Other active optics alternatives are possible for a space telescope. The modified-Rumsey design is of interest for developing large space- and ground-based survey telescopes in UV, visible, or IR ranges, such as currently demonstrated with the construction of identical telescopes MINITRUST-1 and -2, f/5 - 2 deg field of view. Double-pass optical tests show diffraction-limited images.
机译:广角天文学需要开发更大口径的望远镜。与其他望远镜设计相比,三镜修改式Rumsey设计的光学特性具有显着优势:(i)在任何波长下,该设计均具有平坦的视场并且是无影象的; (ii)该系统极为紧凑,即比Schmidt短四倍。与为斯隆(Sloan)数字天空勘测开发的具有双透镜校正器的同等紧凑的平场Ritchey-Chretien(需要对六个光学表面进行抛光)相比,改进的Rumsey设计仅需要两个表面抛光并提供更好的成像质量。所有的镜子都是双曲面类型的球体。从经典的Rumsey设计开始,表明使用所有八个可用的自由参数,可以通过主动光学方法从单个可变形基板上同时进行主镜和第三镜的球形化。一次和三次超酯化之间的连续性条件是通过恒定厚度的中间窄环实现的,该环不被光学使用。在抛光成球形的双花瓶形式之后,通过原位应力实现初级-三级超酯化。郁金香形的次生通过应力抛光而被过度润滑。太空望远镜还可以使用其他有源光学器件。改进的Rumsey设计对于开发UV,可见光或IR范围内的大型空间和地面测量望远镜很有用,例如当前通过构造相同的MINITRUST-1和-2,f / 5-2望远镜展示的情况deg视场。双通光学测试显示衍射极限图像。

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