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Fresnel phasing of segmented mirror telescopes

机译:分段镜望远镜的菲涅耳定相

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Shack-Hartmann (S-H) phasing of segmented telescopes is based upon a physical optics generalization of the geometrical optics Shack-Hartmann test, in which each S-H lenslet straddles an intersegment edge. For the extremely large segmented telescopes currently in the design stages, one is led naturally to very large pupil demagnifications for the S-H phasing cameras. This in turn implies rather small Fresnel numbers F for the lenslets; the nominal design for the Thirty Meter Telescope calls for F velence 0.6. For such small Fresnel numbers, it may be possible to eliminate the lenslets entirely, replacing them with a simple mask containing a sparse array of clear subapertures and thereby also eliminating a number of manufacturing problems and experimental complications associated with lenslets. We present laboratory results that demonstrate the validity of this approach.
机译:分段望远镜的Shack-Hartmann(S-H)调相基于几何光学Shack-Hartmann测试的物理光学一般化,其中每个S-H小透镜跨过节间边缘。对于目前处于设计阶段的超大分段望远镜,自然会导致S-H移相相机的瞳孔放大倍数非常大。反过来,这意味着小透镜的菲涅耳数F很小;三十米望远镜的标称设计要求F velence 0.6。对于这样小的菲涅耳数,可能有可能完全消除小透镜,而用包含稀疏透明通孔阵列的简单掩膜代替小透镜,从而也消除了与小透镜相关的许多制造问题和实验复杂性。我们提供的实验室结果证明了这种方法的有效性。

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