Published December 15, 2015
| Version v1
Publication
Homological computation using spanning trees
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Description
We introduce here a new F2 homology computation algorithm based on a generalization of the spanning tree technique on a finite 3-dimensional cell complex K embedded in ℝ3. We demonstrate that the complexity of this algorithm is linear in the number of cells. In fact, this process computes an algebraic map φ over K, called homology gradient vector field (HGVF), from which it is possible to infer in a straightforward manner homological information like Euler characteristic, relative homology groups, representative cycles for homology generators, topological skeletons, Reeb graphs, cohomology algebra, higher (co)homology operations, etc. This process can be generalized to others coefficients, including the integers, and to higher dimension.
Additional details
Identifiers
- URL
- https://idus.us.es/handle/11441/31975
- URN
- urn:oai:idus.us.es:11441/31975
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- Origin repository
- USE