Topological simplification guided by forbidden regions
Leśkiewicz J, Furmanek B, Lipiński M, Morozov D. 2026. Topological simplification guided by forbidden regions. 42nd International Symposium on Computational Geometry. SoCG: Symposium on Computational Geometry, LIPIcs, vol. 367, 72:1-72:17.
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Author
Leśkiewicz, Jakub;
Furmanek, Bartosz;
Lipiński, MichałISTA
;
Morozov, Dmitriy
Corresponding author has ISTA affiliation
Department
Series Title
LIPIcs
Abstract
Topological simplification is the process of reducing complexity of a function while maintaining its essential features. Its goal is to find a new filter function, which reorders cells of the input complex in a way which eliminates some persistent homological features, without affecting the rest. We present a new approach to simplification based on the concept of forbidden regions and combinatorial dynamics. It allows us to reorder and cancel critical values, whose cancellation is not possible using existing methods because they are not consecutive in the total order. Each such cancellation takes O(c⋅n) time in the worst case, where c is the number of birth-death pairs and n is the size of the input complex.
Publishing Year
Date Published
2026-05-27
Proceedings Title
42nd International Symposium on Computational Geometry
Publisher
Schloss Dagstuhl - Leibniz-Zentrum für Informatik
Acknowledgement
Jakub Leśkiewicz wants to thank his supervisor, Prof. Marian Mrozek, forscientific guidance, patience, and opportunity to delay the rest of his duties while writing this work.
The author also extends thanks to his entire family, to Zuzanna Świątek, and to Mikołaj Kardyś,
BEng, MSc, for providing meals during the most intensive periods of work. Jakub Leśkiewicz: The research was partially funded by the Polish National Science Center under Opus Grant No. 2019/35/B/ST1/00874 and Opus Grant 2025/57/B/ST1/00550. Bartosz Furmanek: The research was partially funded by the Polish National Science Center under Opus Grant No. 2019/35/B/ST1/00874 and Opus Grant 2025/57/B/ST1/00550. Michał Lipiński: This project has received funding from the European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie Grant Agreement No. 101034413.
Dmitriy Morozov: This work was supported in part by the U.S. Department of Energy, Office
of Science, Office of Advanced Scientific Computing Research, under Contract No. DE-AC02-
05CH11231.
Volume
367
Article Number
72:1-72:17
Conference
SoCG: Symposium on Computational Geometry
Conference Location
New Brunswick, NJ, United States
Conference Date
2026-06-02 – 2026-06-05
ISBN
eISSN
IST-REx-ID
Cite this
Leśkiewicz J, Furmanek B, Lipiński M, Morozov D. Topological simplification guided by forbidden regions. In: 42nd International Symposium on Computational Geometry. Vol 367. Schloss Dagstuhl - Leibniz-Zentrum für Informatik; 2026. doi:10.4230/LIPIcs.SoCG.2026.72
Leśkiewicz, J., Furmanek, B., Lipiński, M., & Morozov, D. (2026). Topological simplification guided by forbidden regions. In 42nd International Symposium on Computational Geometry (Vol. 367). New Brunswick, NJ, United States: Schloss Dagstuhl - Leibniz-Zentrum für Informatik. https://doi.org/10.4230/LIPIcs.SoCG.2026.72
Leśkiewicz, Jakub, Bartosz Furmanek, Michał Lipiński, and Dmitriy Morozov. “Topological Simplification Guided by Forbidden Regions.” In 42nd International Symposium on Computational Geometry, Vol. 367. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2026. https://doi.org/10.4230/LIPIcs.SoCG.2026.72.
J. Leśkiewicz, B. Furmanek, M. Lipiński, and D. Morozov, “Topological simplification guided by forbidden regions,” in 42nd International Symposium on Computational Geometry, New Brunswick, NJ, United States, 2026, vol. 367.
Leśkiewicz J, Furmanek B, Lipiński M, Morozov D. 2026. Topological simplification guided by forbidden regions. 42nd International Symposium on Computational Geometry. SoCG: Symposium on Computational Geometry, LIPIcs, vol. 367, 72:1-72:17.
Leśkiewicz, Jakub, et al. “Topological Simplification Guided by Forbidden Regions.” 42nd International Symposium on Computational Geometry, vol. 367, 72:1-72:17, Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2026, doi:10.4230/LIPIcs.SoCG.2026.72.
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