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Robust and fast filtering method for enhancement of two-dimensional quality-guided path unwrapping algorithms
Applied Optics
|May 14, 2020
Summary
This study introduces a new phase noise reduction algorithm using bicubic interpolation (BIM). The method enhances phase map accuracy, significantly improving interferometer performance and reducing errors in phase unwrapping.
Area of Science:
- Optical Metrology
- Signal Processing
Background:
- Phase noise is a significant challenge in interferometric measurements.
- Accurate phase unwrapping is crucial for quantitative analysis of surface topography.
Purpose of the Study:
- To develop and evaluate a novel filtering algorithm for phase noise reduction.
- To enhance the accuracy of phase map unwrapping using bicubic interpolation methods.
Main Methods:
- Implementation of bicubic interpolation filtering (BIF) and bicubic interpolation smoothed filtering (BISF).
- Integration of BIM with conventional phase unwrapping algorithms.
- Utilizing a Mirau interferometer for performance evaluation.
Main Results:
- BIF and BISF effectively convert noise distributions to Gaussian distributions.
- The proposed methods enhance unwrapped phase map accuracy.
- A root mean square error of approximately 31 nm was achieved with the BISF method when combined with quality-guided path unwrapping algorithms.
Conclusions:
- Bicubic interpolation methods offer powerful low-pass filtering for phase noise reduction.
- The proposed filtering algorithms significantly improve phase map accuracy in interferometric measurements.
- The combination of BIM with quality-guided unwrapping provides a robust solution for precise phase measurement.
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