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Interferometric test method for testing convex aspheric mirror surfaces

机译:用于测试凸面非球面镜表面的干涉测试方法

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An interferometric null Test Method is described for testing convex aspheric surfaces, such as found in secondary mirrors of Cassegrain telescopes or variations thereof such as Mersenne and Ritchey-Chretien. A family of test designs is described covering a wide range of mirror diameters, radii of curvature, and aspheric shapes as described by conic constants and/or polynomials. The Test Method has been used successfully for testing the convex hyperboloid surface of the 244-mm diameter secondary mirror of the NASA 3-meter IRTF telescope. The Test Method is currently being used to test the 120-mm diameter, convex paraboloid secondary mirrors of the Magdalena Ridge Observatory Interferometer (MROI). Test designs exist on paper for both Keck secondary mirrors (0.53-m and 1.4-m diameter), the HST secondary (0.3-meter diameter), and secondary mirrors of some of the extremely large telescopes of the future, such as the TMT secondary (3.2-m diameter). In typical test embodiments, the simplicity of the Test enables rapid implementation at a fraction of the cost of comparable Hindle-Sphere or Hindle-Simpson tests.
机译:描述了一种干涉测量无效测试方法,该方法用于测试凸非球面,例如在卡塞格林望远镜的次级镜或其变体(例如梅森和里奇-克雷蒂安)中发现的。描述了一系列测试设计,涵盖了广泛的反射镜直径,曲率半径和非球面形状,如圆锥常数和/或多项式所描述。该测试方法已成功用于测试NASA 3米IRTF望远镜的244 mm直径辅助镜的凸双曲面表面。该测试方法目前用于测试Magdalena Ridge天文台干涉仪(MROI)的直径为120 mm的凸抛物面辅助镜。纸上既有Keck辅助镜(直径0.53m和1.4-m),HST辅助镜(直径0.3米)和未来某些超大型望远镜的辅助镜(如TMT辅助镜)的纸上测试设计。 (直径3.2米)。在典型的测试实施例中,测试的简便性使快速实施成为可能,而成本仅为可比较的Hindle-Sphere或Hindle-Simpson测试的一小部分。

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