Linear chirped slope profile for spatial calibration in slope measuring deflectometry

Loading...
Thumbnail Image
Date
2016
Volume
87
Issue
5
Journal
Series Titel
Book Title
Publisher
Melville, NY : American Institute of Physics
Link to publishers version
Abstract

Slope measuring deflectometry is commonly used by the X-ray optics community to measure the long-spatial-wavelength surface figure error of optical components dedicated to guide and focus X-rays under grazing incidence condition at synchrotron and free electron laser beamlines. The best performing instruments of this kind are capable of absolute accuracy on the level of 30-50 nrad. However, the exact bandwidth of the measurements, determined at the higher spatial frequencies by the instrument’s spatial resolution, or more generally by the instrument’s modulation transfer function (MTF) is hard to determine. An MTF calibration method based on application of a test surface with a one-dimensional (1D) chirped height profile of constant amplitude was suggested in the past. In this work, we propose a new approach to designing the test surfaces with a 2D-chirped topography, specially optimized for MTF characterization of slope measuring instruments. The design of the developed MTF test samples based on the proposed linear chirped slope profiles (LCSPs) is free of the major drawback of the 1D chirped height profiles, where in the slope domain, the amplitude strongly increases with the local spatial frequency of the profile. We provide the details of fabrication of the LCSP samples. The results of first application of the developed test samples to measure the spatial resolution of the BESSY-NOM at different experimental arrangements are also presented and discussed.

Description
Keywords
Calibration, Electrons, Free electron lasers, Image resolution, Optical transfer function, Calibration method, Experimental arrangement, Modulation transfer function (MTF), Optical components, Slope measuring instrument, Spatial calibration, Spatial wavelengths, Surface figure error, Spatial variables measurement, calibration, height, modulation transfer function, topography
Citation
Siewert, F., Zeschke, T., Arnold, T., Paetzelt, H., & Yashchuk, V. V. (2016). Linear chirped slope profile for spatial calibration in slope measuring deflectometry. 87(5). https://doi.org//10.1063/1.4950737
License
CC BY 4.0 Unported