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Characterization and operation optimization of large aperture optical interferometers using binary pseudorandom array test standards

机译:使用二进制伪随机阵列测试标准对大口径光学干涉仪进行表征和优化操作

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Recently, a technique for calibration of the Modulation Transfer Function (MTF) of a broad variety of metrology instrumentation has been established. The technique is based on test samples structured according to binary pseudorandom (BPR) one-dimensional sequences and two-dimensional arrays. The inherent power spectral density of BPR gratings and arrays, has a deterministic white-noise-like character that allows a direct determination of the MTF with a uniform sensitivity over the entire spatial frequency range and field-of-view of an instrument. As such, the BPR samples satisfy the characteristics of a test standard: functionality, ease of specification and fabrication, reproducibility, and low sensitivity to manufacturing error. Here we discuss our recent developments working with support of the U.S. Department of Energy on industrialization of the technique. The goal is to develop affordable BPR test samples, application procedures, and data processing software, suitable for thorough characterization of optical interferometers and microscopes, as well as x-ray, electron (scanning and transmission), and atomic force microscopes. We report on the development of BPR array test samples optimized for advanced characterization (including the instrumental MTF and aberrations) and operation optimization of large aperture optical interferometers. We describe the sample fabrication process and tests to verify the compliance to desired surface topography. The data acquisition and analysis procedures for application of the technique for precise focusing of Fizeau interferometer are discussed in detail.
机译:最近,已经建立了用于校准多种计量仪器的调制传递函数(MTF)的技术。该技术基于根据二进制伪随机(BPR)一维序列和二维数组构造的测试样本。 BPR光栅和阵列的固有功率谱密度具有确定性的类似白噪声的特征,从而可以在整个仪器的整个空间频率范围和视野范围内以均一的灵敏度直接确定MTF。因此,BPR样品满足测试标准的特征:功能性,规格和制造的简易性,可重复性以及对制造误差的低敏感性。在此,我们将在美国能源部的支持下讨论该技术的产业化方面的最新进展。目标是开发价格合理的BPR测试样品,应用程序和数据处理软件,以适合光学干涉仪和显微镜以及X射线,电子(扫描和透射)和原子力显微镜的全面表征。我们报告了针对高级表征(包括仪器的MTF和像差)和大口径光学干涉仪的操作优化而优化的BPR阵列测试样品的开发情况。我们描述了样品的制造过程和测试,以验证对所需表面形貌的符合性。详细讨论了用于Fizeau干涉仪精确聚焦技术的数据采集和分析程序。

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