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  4. Lens-based phase retrieval under spatially partially coherent illumination - Part II: Shape measurements
 
Zitierlink DOI
10.26092/elib/3832
Verlagslink DOI
10.1016/j.optlaseng.2020.106407

Lens-based phase retrieval under spatially partially coherent illumination - Part II: Shape measurements

Veröffentlichungsdatum
2021-04
Autoren
Agour, Mostafa  
Falldorf, Claas  
Thiemicke, Fabian  
Bergmann, Ralf B.  
Zusammenfassung
We experimentally demonstrate the shape measurement of micro objects by means of phase retrieval under spatially partially coherent illumination. This approach offers an extended depth of focus, vibration insensitivity, short measurement time and precise shape measurements, enables the use of spatially extended light sources such as LEDs and thus significantly improves the eye safety of the method. The employed setup is based on a telecentric -imaging system with a tunable lens across the common Fourier plane. Based on the theoretical investigation presented in Part I, we verify that -based phase retrieval is feasible if the radius of the point spread function of the imaging system is smaller than that of the correlation (spatial coherence) area across the object plane. In this case, a light field with a defined complex amplitude can be assigned to the measured intensity distributions. As a proof of principle towards industrial applications, the 3D shape of a cold-formed micro-cup is reconstructed by combining phase retrieval with two-wavelength contouring. A depth of focus in the range of few millimeters and the measurement time and uncertainty of 0.4 s, and m, respectively, can be achieved.
Schlagwörter
Optical metrology

; 

Phase Retrieval

; 

Wave field sensing

; 

partially coherent illumination
Verlag
Elsevier Science
Institution
Universität Bremen  
Fachbereich
Fachbereich 01: Physik/Elektrotechnik (FB 01)  
Zentrale Wissenschaftliche Einrichtungen und Kooperationen  
Institute
BIAS - Bremer Institut für angewandte Strahltechnik GmbH  
MAPEX Center for Materials and Processes  
Dokumenttyp
Wissenschaftlicher Artikel
Zeitschrift/Sammelwerk
Optics and Lasers in Engineering  
Band
139
Zweitveröffentlichung
Ja
Dokumentversion
Postprint
Lizenz
https://creativecommons.org/licenses/by-nc-nd/4.0/
Sprache
Englisch
Dateien
Lade...
Vorschaubild
Name

Agour et al_Lens-based phase retrieval-Part II_2021_accepted-version.pdf

Size

2.06 MB

Format

Adobe PDF

Checksum

(MD5):942d01fe9dbba6560fa221c2fcfe014f

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