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GPU Algorithm for Enumerating PL Spheres of Picard Number 4: Application to Toric Topology
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Publication Year
2024-06-01
Journal
Leibniz International Proceedings in Informatics, LIPIcs
Publisher
Schloss Dagstuhl- Leibniz-Zentrum fur Informatik GmbH, Dagstuhl Publishing
Citation
Leibniz International Proceedings in Informatics, LIPIcs, Vol.293
Keyword
binary matroidcharacteristic mapGPU programmingparallel computingPicard numberPL spheresimplicial spheretoric manifoldweak pseudo-manifold
Mesh Keyword
Binary matroidsCharacteristic mapGPU algorithmsGPU-programmingParallel com- putingPicard numberPL sphereSimplicial spheresToric manifoldWeak pseudo-manifold
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Software
Abstract
The fundamental theorem for toric geometry states a toric manifold is encoded by a complete non-singular fan, whose combinatorial structure is the one of a PL sphere together with the set of generators of its rays. The wedge operation on a PL sphere increases its dimension without changing its Picard number. The seeds are the PL spheres that are not wedges. A PL sphere is toric colorable if it comes from a complete rational fan. A result of Choi and Park tells us that the set of toric seeds with a fixed Picard number p is finite. In fact, a toric PL sphere needs its facets to be bases of some binary matroids of corank p with neither coloops, nor cocircuits of size 2. We present and use a GPU-friendly and computationally efficient algorithm to enumerate this set of seeds, up to simplicial isomorphism. Explicitly, it allows us to obtain this set of seeds for Picard number 4 which is of main importance in toric topology for the characterization of toric manifolds with small Picard number. This follows the work of Kleinschmidt (1988) and Batyrev (1991) who fully classified toric manifolds with Picard number ≤ 3.
ISSN
1868-8969
Language
eng
URI
https://aurora.ajou.ac.kr/handle/2018.oak/37157
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85195469002&origin=inward
DOI
https://doi.org/10.4230/lipics.socg.2024.41
Journal URL
http://drops.dagstuhl.de/opus/institut_lipics.php?fakultaet=04
Type
Conference
Funding
This work was supported by the National Research Foundation of Korea Grant funded by the Korean Government (NRF-2019R1A2C2010989).
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Choi, Suyoung 최수영
Department of Mathematics
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