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VST optics design strategy and foreseen performance from U to I bands

机译:VST光学设计策略和U预定从U到I乐队的表现

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This paper shows criteria and strategy followed for the optics design of VST telescope, and foreseen image quality. The optics design has been optimized in order to achieve the high required image quality on the base of main scientific requirements, mechanics constraints coming from the wide CCD mosaic camera and dimensional requirements. Manufacturing reliability integrated operational efficiency, and costs optimization criteria have been also taken into account. The VST optics has been designed in order to have a 2.61 m Alt.az telescope operating from U to I bands with an excellent image quality (80% of Encircled Energy enclosed in less than two pixels) on a wide field of view (1° x 1°). The telescope will have a very high resolution (0.21 "/pixel) with a pixel size of 15 μm. The peculiarity of VST optics design is that telescope configuration is not a pure Ritchey -Chretien, but it is integrated with two different refracting correctors in order to minimize residual field aberrations. One corrector is optimized for observations at small zenith angles (U-I bands), while the other one includes an ADC providing high quality images until zenith angles of 50° (B-I bands). This corrector is a very useful and innovative integrated facility. The optics is being manufactured from Zeiss/LZOS. The telescope is going to be mounted in Napoli before shipment to Chile where it will be installed near the giants VLT units and will be a dedicated wide field imaging facility operating in narrow and wide visible bands.
机译:本文示出的标准和策略遵循VST望远镜的光学设计,以及预见的图像质量。光学设计是为了实现的主要科学要求基座上的高要求的图像质量得到了优化,力学约束从广角CCD照相机镶嵌和尺寸要求来。制造可靠性集成运算效率,和成本优化标准也已被考虑。该VST光学已被设计以便具有从U给我带的2.61米Alt.az望远镜操作具有优异的图像质量(圆内能量的80%包含在小于两个像素)上的宽视场(1° X 1°)。该望远镜将具有非常高的分辨率(0.21“/像素)与15微米的像素尺寸。VST光学设计的特点是,望远镜配置不是纯里奇-Chretien,但它是与两个不同的折射校正在集成为了尽量减少剩余场像差,一个校正器在小天顶角(UI频带)观测优化,而另一个包括ADC提供高品质图像,直到50°(BI频带)天顶角,这个校正器是一个非常有用和创新的一体化设备。该光学装置被从蔡司/ LZOS制造。望远镜将要被安装在Napoli装运到智利在那里将巨人VLT单元附近安装之前,将在狭窄的专用宽视场成像设施操作和宽可见光波段。

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