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Broadband, static wave-front generation: Na-Ag ion-exchange phase screens and telescope emulation

机译:宽带静态波前生成:Na-Ag离子交换相屏蔽和望远镜仿真

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We test the statistical properties of static, atmospherelike wave fronts in glass that allow repeatable testing of astronomical adaptive optics instrumentation. The technology is mask-structured ion exchange (MSI) in glass and has significant advantages over other transmissive technologies. The screens are easy to clean, are insensitive to ambient temperature changes, and have high optical-to-near-infrared transmission. However, the effective coherence length (r_(0)) on each of the fabricated screens is systematically too large or, equivalently, the fabricated aberrations are too weak. Despite this strong caveat, the screens appear to be quite useful: Long-exposure point-spread functions have realistic shapes, and power spectrum indices closely match those of the computer-generated wave fronts. Most significant, stacking screens with similar r_(0) values reduced r_(0) by the amount predicted by turbulence theory. The refractivity of MSI screens remains unmeasured. Finally, we present our design of an optical system that emulates the key characteristics of the Very Large Telescope, made to contain glass phase screens and to mimic an array of stars for multiconjugate adaptive optics system testing.
机译:我们测试了玻璃中类似大气的静态波阵面的统计特性,从而可以对天文自适应光学仪器进行重复测试。该技术是玻璃中的掩模结构离子交换(MSI),与其他透射技术相比具有显着优势。屏幕易于清洁,对环境温度变化不敏感,并且具有很高的光学到近红外的透射率。但是,每个制作的屏幕上的有效相干长度(r_(0))系统地太大,或者等效地,制作的像差太弱。尽管有这些警告,但屏幕似乎仍然很有用:长时间曝光的点扩展功能具有逼真的形状,并且功率谱索引与计算机生成的波阵面的功率谱非常匹配。最重要的是,具有类似r_(0)值的堆叠屏幕将r_(0)减少了湍流理论预测的数量。 MSI屏幕的折射率仍然无法测量。最后,我们介绍一种光学系统的设计,该系统模仿超大型望远镜的关键特性,该系统包含玻璃相屏并模仿多颗自适应多光学系统测试用的恒星阵列。

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