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Fresnel Interferometric Imager: ground-based prototype

机译:菲涅耳干涉成像仪:基于地面的原型

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摘要

The Fresnel Interferometric Imager is a space-based astronomical telescope project yielding milliarcsecond angular resolution and high contrast images with loose manufacturing constraints. This optical concept involves diffractive focusing and formation flying: a first "primary optics" space module holds a large binary Fresnel array, and a second "focal module" holds optical elements and focal instruments that allow for chromatic dispersion correction. We have designed a reduced-size Fresnel Interferometric Imager prototype and made optical tests in our laboratory in order to validate the concept for future space missions. The primary module of this prototype consists of a square, 8 cm side, 23 m focal length Fresnel array. The focal module is composed of a diaphragmed small telescope used as "field lens," a small cophased diverging Fresnel zone lens that cancels the dispersion, and a detector. An additional module collimates the artificial targets of various shapes, sizes, and dynamic ranges to be imaged. We describe the experimental setup, different designs of the primary Fresnel array, and the cophased Fresnel zone lens that achieves rigorous chromatic correction. We give quantitative measurements of the diffraction limited performances and dynamic range on double sources. The tests have been performed in the visible domain, lambda velence 400-700 nm. In addition, we present computer simulations of the prototype optics based on Fresnel propagation that corroborate the optical tests. This numerical tool has been used to simulate the large aperture Fresnel arrays that could be sent to space with diameters of 3 to 30 m, foreseen to operate from Lyman alpha (121 nm) to mid IR (25 (mu)m).
机译:菲涅尔干涉成像仪是一个天基天文望远镜项目,可产生毫秒级的角分辨率和具有宽松制造限制的高对比度图像。这个光学概念涉及衍射聚焦和地层飞行:第一个“主光学”空间模块可容纳大型二元菲涅耳阵列,第二个“聚焦模块”可容纳可进行色散校正的光学元件和聚焦仪器。我们设计了一个缩小尺寸的菲涅耳干涉成像仪原型,并在我们的实验室中进行了光学测试,以验证未来太空任务的概念。该原型机的主要模块包括一个方形,8厘米边,23 m焦距的菲涅耳阵列。聚焦模块由用作“物镜”的光阑小望远镜,抵消色散的小同相发散菲涅耳带透镜和检测器组成。附加模块可对要成像的各种形状,大小和动态范围的人造目标进行准直。我们描述了实验装置,主要菲涅耳阵列的不同设计以及实现严格色彩校正的同相菲涅耳带状透镜。我们给出了双源衍射极限性能和动态范围的定量测量。测试是在可见光区λvelence 400-700 nm中进行的。另外,我们提出了基于菲涅耳传播的原型光学的计算机仿真,证实了光学测试。该数值工具已用于模拟大口径菲涅耳阵列,该阵列可以发送到直径为3至30 m的空间中,预计可在Lyman alpha(121 nm)到IR(25μm)的范围内工作。

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