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Improving holographic reconstruction by automatic Butterworth filtering for microelectromechanical systems characterization

Academic Article
Publication Date:
2015
abstract:
Digital holographic microscopy is an important interferometric tool in optical metrology allowing the investigation of engineered surfaces with microscale lateral resolution and nanoscale axial precision. In particular, microelectromechanical systems (MEMS) surface analysis, conducted by holographic characterization, requires high accuracy for functional testing. The main issues related to MEMS inspection are the superficial roughness and the complex geometry resulting from the several fabrication steps. Here, an automatic procedure, particularly suited in the case of high-roughness surfaces, is presented to selectively filter the spectrum, providing very lownoise reconstructed images. The numerical procedure is based on Butterworth filtering, and the obtained results demonstrate a significant increase in the images' quality and in the accuracy of the measurements, making our technique highly applicable for quantitative phase imaging in MEMS analysis. Furthermore, our method is fully tunable to the spectrum under investigation and automatic. This makes it highly suitable for real-time applications. Several experimental tests show the suitability of the proposed approach.
Iris type:
01.01 Articolo in rivista
Keywords:
Holographic interferometry; Phase measurement; Image recognition; algorithms and filters
List of contributors:
Matrecano, Marcella; Quaranta, Fabio; Ferraro, Pietro; Persano, Anna; Miccio, Lisa; Memmolo, Pasquale; Siciliano, PIETRO ALEARDO
Authors of the University:
FERRARO PIETRO
MEMMOLO PASQUALE
MICCIO LISA
PERSANO ANNA
QUARANTA FABIO
SICILIANO PIETRO ALEARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/394746
Published in:
APPLIED OPTICS (2004)
Journal
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URL

https://www.osapublishing.org/ao/abstract.cfm?uri=ao-54-11-3428
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