These techniques have proven to be very useful in testing different materials in a non-destructive way.
They have changed dramatically during the last years due to the development of modern optical components, with faster and more powerful digital computers, and novel data processing approaches. This most up-to-date overview of the topic describes new techniques developed in the field of speckle metrology over the last decade, as well as applications to experimental mechanics, material science, optical testing, and fringe analysis.
Advances in Speckle Metrology and Related Techniques / Edition 1
About the Author Prof. Kaufmann is professor of Applied Optics at the National University of Rosario, Argentina, and chief scientist at the Physics Institute of Rosario which is linked both to the university and to the National Council of Scientific and Technological Research. Professor Kaufmann has co-authored more than papers published in international journals and conference proceedings and several book chapters.
In the Secretary of Science and Technology of Argentina awarded him the Bernardo Houssay Prize for his contributions to the field of optical engineering.
Table of contents 1. Radial Speckle Interferometry and Applications 2.
Depth-Resolved Displacement Field Measurement 3. Single-Image Interferogram Demodulation 4. Optical Vortex Metrology 6.
- Advances in speckle metrology and related techniques.!
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- Advances in Speckle Metrology and Related Techniques.
- Advances in Speckle Metrology and Related Techniques - quakecazews.tk;
Metrological characterization of speckle patterns. Fringe pattern analysis and phase retrieval.
Data retrieval in speckle metrology. Digital speckle pattern interferometry. Digital holography and holographic interferometry. Optical diffraction tomography.
- Speckle Interferometry.
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- Advances in speckle metrology and related techniques.;
Speckle pattern photography and digital image correlation. Nondestructive testing, damage detection and material characterization.
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