| Literature DB >> 33562598 |
Yassir Arezki1,2, Rong Su3, Ville Heikkinen4, François Leprete5, Pavel Posta6, Youichi Bitou7, Christian Schober8, Charyar Mehdi-Souzani2, Bandar Abdulrahman Mohammed Alzahrani9, Xiangchao Zhang10, Yohan Kondo7, Christof Pruss8, Vit Ledl6, Nabil Anwer2, Mohamed Lamjed Bouazizi9, Richard Leach3, Hichem Nouira1.
Abstract
The design of innovative reference aspheric and freeform optical elements was investigated with the aim of calibration and verification of ultra-high accurate measurement systems. The verification is dedicated to form error analysis of aspherical and freeform optical surfaces based on minimum zone fitting. Two thermo-invariant material measures were designed, manufactured using a magnetorheological finishing process and selected for the evaluation of a number of ultra-high-precision measurement machines. All collected data sets were analysed using the implemented robust reference minimum zone (Hybrid Trust Region) fitting algorithm to extract the values of form error. Agreement among the results of several partners was observed, which demonstrates the establishment of a traceable reference full metrology chain for aspherical and freeform optical surfaces with small amplitudes.Entities:
Keywords: aspheric and freeform optical elements; dimensional metrology; measured data evaluation; robust reference minimum zone (Hybrid Trust Region) fitting; ultra-high precision measuring machine; uncertainty
Year: 2021 PMID: 33562598 PMCID: PMC7915810 DOI: 10.3390/s21041103
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576