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Katsusuke Nabeshima
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2020 – today
- 2024
- [j16]Katsusuke Nabeshima:
Generic Gröbner basis of a parametric ideal and its application to a comprehensive Gröbner system. Appl. Algebra Eng. Commun. Comput. 35(1): 55-70 (2024) - [j15]Shinichi Tajima, Katsusuke Nabeshima:
A Deterministic Method for Computing Bertini Type Invariants of Parametric Ideals. Math. Comput. Sci. 18(3): 14 (2024) - [c21]Ryosuke Kuramochi, Kazuki Tanaka, Katsusuke Nabeshima:
On the Radical of a Polynomial Ideal with Parameters. CASC 2024: 193-214 - [c20]Natsu Wada, Katsusuke Nabeshima:
Merging Multiple Algorithms for Computing Comprehensive Gröbner Systems Using Parallel Processing. CASC 2024: 373-391 - [e2]Katsusuke Nabeshima, Stephen M. Watt:
Proceedings of the SCSS 2024 Work in Progress Workshop co-located with 10th International Symposium on Symbolic Computation in Software Science (SCSS 2024), Tokyo, Japan, Aug 28-30, 2024. CEUR Workshop Proceedings 3754, CEUR-WS.org 2024 [contents] - 2023
- [j14]Shinichi Tajima, Katsusuke Nabeshima, Katsuyoshi Ohara, Yoko Umeta:
Computing Holonomic D-Modules Associated to a Family of Non-isolated Hypersurface Singularities via Comprehensive Gröbner Systems of PBW Algebra. Math. Comput. Sci. 17(1): 6 (2023) - [c19]Katsusuke Nabeshima, Shinichi Tajima:
Effective Algorithm for Computing Noetherian Operators of Positive Dimensional Ideals. CASC 2023: 272-291 - 2022
- [j13]Katsusuke Nabeshima, Shinichi Tajima:
Effective algorithm for computing Noetherian operators of zero-dimensional ideals. Appl. Algebra Eng. Commun. Comput. 33(6): 867-899 (2022) - [j12]Katsusuke Nabeshima, Shinichi Tajima:
Correction: Effective algorithm for computing Noetherian operators of zero‑dimensional ideals. Appl. Algebra Eng. Commun. Comput. 33(6): 901 (2022) - 2021
- [j11]Katsusuke Nabeshima, Shinichi Tajima:
A new algorithm for computing logarithmic vector fields along an isolated singularity and Bruce-Roberts Milnor ideals. J. Symb. Comput. 107: 190-208 (2021) - [j10]Katsusuke Nabeshima, Shinichi Tajima:
Testing Zero-Dimensionality of Varieties at a Point. Math. Comput. Sci. 15(2): 317-331 (2021) - [j9]Shinichi Tajima, Katsusuke Nabeshima:
An Algorithm for Computing Torsion Differential Forms Associated with an Isolated Hypersurface Singularity. Math. Comput. Sci. 15(2): 353-367 (2021) - [c18]Shinichi Tajima, Katsusuke Nabeshima:
A New Deterministic Method for Computing Milnor Number of an ICIS. CASC 2021: 391-408 - [c17]Shinichi Tajima, Katsusuke Nabeshima:
Computing Grothendieck Point Residues via Solving Holonomic Systems of First Order Partial Differential Equations. ISSAC 2021: 361-368 - [i5]Katsusuke Nabeshima, Shinichi Tajima:
Methods for computing b-functions associated with μ-constant deformations - Case of inner modality 2 -. CoRR abs/2101.01384 (2021) - 2020
- [c16]Katsusuke Nabeshima:
Computing Parametric Standard Bases for Semi-weighted Homogeneous Isolated Hypersurface Singularities. CASC 2020: 447-460 - [c15]Shinichi Tajima, Takafumi Shibuta, Katsusuke Nabeshima:
Computing Logarithmic Vector Fields Along an ICIS Germ via Matlis Duality. CASC 2020: 543-562 - [c14]Hiroshi Teramoto, Katsusuke Nabeshima:
Parametric standard system for mixed module and its application to singularity theory. ISSAC 2020: 426-433 - [i4]Shinichi Tajima, Katsusuke Nabeshima:
Computing regular meromorphic differential forms via Saito's logarithmic residues. CoRR abs/2007.09950 (2020) - [i3]Shinichi Tajima, Katsusuke Nabeshima:
An effective method for computing Grothendieck point residue mappings. CoRR abs/2011.09092 (2020)
2010 – 2019
- 2019
- [j8]Katsusuke Nabeshima, Shinichi Tajima:
Solving Parametric Ideal Membership Problems and Computing Integral Numbers in a Ring of Convergent Power Series Via Comprehensive Gröbner Systems. Math. Comput. Sci. 13(1-2): 185-194 (2019) - [j7]Shinichi Tajima, Katsusuke Nabeshima:
An Implementation of the Lê-Teissier Method for Computing Local Euler Obstructions. Math. Comput. Sci. 13(1-2): 273-280 (2019) - [c13]Yosuke Sato, Hiroshi Sekigawa, Ryoya Fukasaku, Katsusuke Nabeshima:
On Parametric Border Bases. MACIS 2019: 10-15 - [c12]Katsusuke Nabeshima, Shinichi Tajima:
Generalized Integral Dependence Relations. MACIS 2019: 48-63 - [i2]Katsusuke Nabeshima, Shinichi Tajima:
Testing zero-dimensionality of varieties at a point. CoRR abs/1903.12365 (2019) - 2018
- [j6]Katsusuke Nabeshima, Katsuyoshi Ohara, Shinichi Tajima:
Comprehensive Gröbner systems in PBW algebras, Bernstein-Sato ideals and holonomic D-modules. J. Symb. Comput. 89: 146-170 (2018) - 2017
- [j5]Katsusuke Nabeshima, Shinichi Tajima:
Algebraic local cohomology with parameters and parametric standard bases for zero-dimensional ideals. J. Symb. Comput. 82: 91-122 (2017) - 2016
- [j4]Katsusuke Nabeshima, Shinichi Tajima:
Computing Tjurina stratifications of μ-constant deformations via parametric local cohomology systems. Appl. Algebra Eng. Commun. Comput. 27(6): 451-467 (2016) - [c11]Katsusuke Nabeshima, Katsuyoshi Ohara, Shinichi Tajima:
Comprehensive Gröbner Systems in Rings of Differential Operators, Holonomic D-modules and B-functions. ISSAC 2016: 349-356 - 2015
- [c10]Katsusuke Nabeshima, Shinichi Tajima:
Efficient Computation of Algebraic Local Cohomology Classes and Change of Ordering for Zero-Dimensional Standard Bases. CASC 2015: 334-348 - [c9]Katsusuke Nabeshima, Shinichi Tajima:
Computing Logarithmic Vector Fields Associated with Parametric Semi-Quasihomogeneous Hypersurface Isolated Singularities. ISSAC 2015: 291-298 - [c8]Katsusuke Nabeshima, Shinichi Tajima:
Solving Extended Ideal Membership Problems in Rings of Convergent Power Series via Gröbner Bases. MACIS 2015: 252-267 - [i1]Katsusuke Nabeshima, Shinichi Tajima:
Algebraic Local Cohomology with Parameters and Parametric Standard Bases for Zero-Dimensional Ideals. CoRR abs/1508.06724 (2015) - 2014
- [c7]Katsusuke Nabeshima, Shinichi Tajima:
An Algorithm for Computing Standard Bases by Change of Ordering via Algebraic Local Cohomology. ICMS 2014: 414-418 - [c6]Katsusuke Nabeshima, Shinichi Tajima:
An Algorithm for Computing Tjurina Stratifications of μ-Constant Deformations by Using Local Cohomology Classes with Parameters. ICMS 2014: 523-530 - [c5]Katsusuke Nabeshima, Shinichi Tajima:
On efficient algorithms for computing parametric local cohomology classes associated with semi-quasihomogeneous singularities and standard bases. ISSAC 2014: 351-358 - [e1]Katsusuke Nabeshima, Kosaku Nagasaka, Franz Winkler, Ágnes Szántó:
International Symposium on Symbolic and Algebraic Computation, ISSAC '14, Kobe, Japan, July 23-25, 2014. ACM 2014, ISBN 978-1-4503-2501-1 [contents] - 2012
- [c4]Katsusuke Nabeshima:
Stability Conditions of Monomial Bases and Comprehensive Gröbner Systems. CASC 2012: 248-259 - 2011
- [j3]Yosuke Sato, Shutaro Inoue, Akira Suzuki, Katsusuke Nabeshima, Kô Sakai:
Boolean Gröbner bases. J. Symb. Comput. 46(5): 622-632 (2011)
2000 – 2009
- 2009
- [j2]Katsusuke Nabeshima:
Reduced Gröbner Bases in Polynomial Rings over a Polynomial Ring. Math. Comput. Sci. 2(4): 587-599 (2009) - 2007
- [j1]Katsusuke Nabeshima:
PGB: a package for computing parametric Gröbner and related objects. ACM Commun. Comput. Algebra 41(3): 104-105 (2007) - [c3]Katsusuke Nabeshima:
A speed-up of the algorithm for computing comprehensive Gröbner systems. ISSAC 2007: 299-306 - 2005
- [c2]Katsusuke Nabeshima:
A Computation Method for ACGB-V. Algorithmic Algebra and Logic 2005: 173-180 - [c1]Katsusuke Nabeshima:
A Direct Products of Fields Approach to Comprehensive Gröbner Bases over Finite Fields. SYNASC 2005: 39-47
Coauthor Index
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