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The zipper program can be found at https://www.math.washington.edu/~marshall/zipper.html. The implementation here, in zipper.m, produces the Riemann map from a domain to the unit disk, and the inverse map. The function polyedit(H) allows the user to either input a polygonally-approximated domain H, or to draw one if H is not given, and explore the structure of the maps via Carleson grids for the inverse maps and dense points for the forward maps.
Cite As
Andrew Krause (2026). Matlab Implementation of Zipper Conformal Mapping Algorithm (https://uk.mathworks.com/matlabcentral/fileexchange/61234-matlab-implementation-of-zipper-conformal-mapping-algorithm), MATLAB Central File Exchange. Retrieved .
General Information
- Version 1.0.0.0 (10.3 KB)
MATLAB Release Compatibility
- Compatible with any release
Platform Compatibility
- Windows
- macOS
- Linux
| Version | Published | Release Notes | Action |
|---|---|---|---|
| 1.0.0.0 |
