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Proceedings Paper

Simplified time-averaged digital interferometry for vibration studies of microelements
Author(s): Krzysztof Patorski; Agata Jozwicka; Artur Kalinowski; Michal Pawlowski
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Paper Abstract

Among interferometric techniques for analyzing mechanical properties and behaviors of microelements and microsystems time-averaged interferometry deserves particular attention because of its relative simplicity and data video display for arbitrary vibration frequency. This communication presents an implementation of the approach of Petitgrand et al. to quantitative analysis of vibration mode shapes based on the calibration of the fringe contrast variation as a function of the vibration amplitude. Fringe contrast maps for static and resonant frequency states are determined using the four-frame method with the phase shift of π/2 between the frames. Then the dynamic map is divided by the static one to obtain the square of the modulus of the characteristic fringe function. For sinusoidal vibrations it is the zero-order Bessel function J0 squared with the vibration amplitude encoded in its argument. The simplicity of our approach and speed of calculations are to be emphasized. The fringe processing method proposed is suitable for conventional two-beam and digital speckle interferometry. The results of experiments carried with silicone cantilever beams used in AFM resonant sensors are presented.

Paper Details

Date Published: 27 May 2003
PDF: 6 pages
Proc. SPIE 4933, Speckle Metrology 2003, (27 May 2003); doi: 10.1117/12.516582
Show Author Affiliations
Krzysztof Patorski, Warsaw Univ. of Technology (Poland)
Agata Jozwicka, Warsaw Univ. of Technology (Poland)
Artur Kalinowski, Warsaw Univ. of Technology (Poland)
Michal Pawlowski, Warsaw Univ. of Technology (Poland)


Published in SPIE Proceedings Vol. 4933:
Speckle Metrology 2003
Kay Gastinger; Ole Johan Lokberg; Svein Winther, Editor(s)

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