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Signature-based algorithms for Gröbner bases over Tate algebras
- Source :
- ISSAC, ISSAC 2021-International Symposium on Symbolic and Algebraic Computation, ISSAC 2021-International Symposium on Symbolic and Algebraic Computation, Jul 2020, Kalamata / Virtual, Greece. ⟨10.1145/3373207.3404035⟩
- Publication Year :
- 2020
- Publisher :
- HAL CCSD, 2020.
-
Abstract
- Introduced by Tate in [Ta71], Tate algebras play a major role in the context of analytic geometry over the-adics, where they act as a counterpart to the use of polynomial algebras in classical algebraic geometry. In [CVV19] the formalism of Gr{\"o}bner bases over Tate algebras has been introduced and effectively implemented. One of the bottleneck in the algorithms was the time spent on reduction , which are significantly costlier than over polynomials. In the present article, we introduce two signature-based Gr{\"o}bner bases algorithms for Tate algebras, in order to avoid many reductions. They have been implemented in SageMath. We discuss their superiority based on numerical evidences.<br />Comment: ISSAC 2021 - International Symposium on Symbolic and Algebraic Computation, Jul 2020, Kalamata / Virtual, Greece
- Subjects :
- Computer Science - Symbolic Computation
Power series
[INFO.INFO-SC]Computer Science [cs]/Symbolic Computation [cs.SC]
Polynomial
GeneralLiterature_INTRODUCTORYANDSURVEY
Mathematics::Number Theory
010102 general mathematics
010103 numerical & computational mathematics
Algebraic geometry
P-adic precision
01 natural sciences
Formalism (philosophy of mathematics)
Analytic geometry
ComputingMethodologies_SYMBOLICANDALGEBRAICMANIPULATION
Gröbner bases
F5 algorithm
0101 mathematics
Tate algebra
Algorithm
Algorithms
Mathematics
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- ISSAC, ISSAC 2021-International Symposium on Symbolic and Algebraic Computation, ISSAC 2021-International Symposium on Symbolic and Algebraic Computation, Jul 2020, Kalamata / Virtual, Greece. ⟨10.1145/3373207.3404035⟩
- Accession number :
- edsair.doi.dedup.....24d4e9182a67519f05b75c530fbdd2cc