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Jacques-Arthur Weil
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2020 – today
- 2022
- [j8]Thomas Dreyfus, Jacques-Arthur Weil:
Computing the Lie algebra of the differential Galois group: The reducible case. J. Symb. Comput. 112: 122-163 (2022) - 2021
- [j7]Moulay A. Barkatou, Joelle Saadé, Jacques-Arthur Weil:
Formal reduction of singular linear differential systems using eigenrings: A refined approach. J. Symb. Comput. 102: 231-258 (2021)
2010 – 2019
- 2018
- [c8]Moulay A. Barkatou, Joelle Saadé, Jacques-Arthur Weil:
A New Approach for Formal Reduction of Singular Linear Differential Systems Using Eigenrings. ISSAC 2018: 47-54 - 2016
- [j6]Ainhoa Aparicio-Monforte, Thomas Dreyfus, Jacques-Arthur Weil:
Liouville integrability: An effective Morales-Ramis-Simó theorem. J. Symb. Comput. 74: 537-560 (2016) - [j5]Alin Bostan, Guillaume Chèze, Thomas Cluzeau, Jacques-Arthur Weil:
Efficient algorithms for computing rational first integrals and Darboux polynomials of planar polynomial vector fields. Math. Comput. 85(299): 1393-1425 (2016) - [c7]Moulay A. Barkatou, Thomas Cluzeau, Jacques-Arthur Weil, Lucia Di Vizio:
Computing the Lie Algebra of the Differential Galois Group of a Linear Differential System. ISSAC 2016: 63-70 - 2013
- [b1]Jacques-Arthur Weil:
Méthodes effectives en théorie de Galois différentielle et applications à l'intégrabilité de systèmes dynamiques. (Effective methods in differential Galois theory and applications to integrability of dynamical systems). University of Limoges, France, 2013 - [i3]Alin Bostan, Guillaume Chèze, Thomas Cluzeau, Jacques-Arthur Weil:
Efficient Algorithms for Computing Rational First Integrals and Darboux Polynomials of Planar Polynomial Vector Fields. CoRR abs/1310.2778 (2013) - 2012
- [j4]Ainhoa Aparicio-Monforte, Jacques-Arthur Weil:
A reduced form for linear differential systems and its application to integrability of Hamiltonian systems. J. Symb. Comput. 47(2): 192-213 (2012) - [c6]Moulay A. Barkatou, Thomas Cluzeau, Carole El Bacha, Jacques-Arthur Weil:
Computing closed form solutions of integrable connections. ISSAC 2012: 43-50 - [i2]Ainhoa Aparicio-Monforte, Jacques-Arthur Weil:
A Reduction Method for Higher Order Variational Equations of Hamiltonian Systems. CoRR abs/1206.6345 (2012) - [i1]Ainhoa Aparicio-Monforte, Elie Compoint, Jacques-Arthur Weil:
A Characterization of Reduced Forms of Linear Differential Systems. CoRR abs/1206.6661 (2012) - 2011
- [c5]Ainhoa Aparicio-Monforte, Moulay A. Barkatou, Sergi Simon, Jacques-Arthur Weil:
Formal first integrals along solutions of differential systems I. ISSAC 2011: 19-26
2000 – 2009
- 2005
- [c4]Mark van Hoeij, Jacques-Arthur Weil:
Solving second order linear differential equations with Klein's theorem. ISSAC 2005: 340-347
1990 – 1999
- 1999
- [j3]Mark van Hoeij, Jean-François Ragot, Felix Ulmer, Jacques-Arthur Weil:
Liouvillian Solutions of Linear Differential Equations of Order Three and Higher. J. Symb. Comput. 28(4-5): 589-609 (1999) - 1997
- [c3]Manuel Bronstein, Thom Mulders, Jacques-Arthur Weil:
On Symmetric Powers of Differential Operators. ISSAC 1997: 156-163 - 1996
- [j2]Felix Ulmer, Jacques-Arthur Weil:
Note on Kovacic's Algorithm. J. Symb. Comput. 22(2): 179-200 (1996) - 1995
- [j1]Felix Ulmer, Jacques-Arthur Weil:
Note on Kovacic's algorithm. SIGSAM Bull. 29(2): 10-11 (1995) - [c2]Jacques-Arthur Weil:
First Integrals and Darboux Polynomials of Homogeneous Linear Differential Systems. AAECC 1995: 469-484 - 1994
- [c1]Jacques-Arthur Weil:
The Use of the Special Semi-Groups for Solving Differential Equations. ISSAC 1994: 341-347
Coauthor Index
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