Presentation of the laboratory

LAGA is a laboratory associated with the CNRS (UMR 7539). It is attached to the Institut Galilée, part of the Sorbonne Paris Nord University, and to the University of Paris 8. LAGA is also associated with several LaBeX: SMP, INFLAMEX and MME-DII.

It includes around 90 researchers and teacher-researchers (including around ten CNRS researchers), 7 ITA and BIATSS staff, more than 50 doctoral students and it receives more than thirty foreign visitors and post-docs each year.

The main research themes currently being developed within the laboratory are as follows:
Arithmetic, algebraic geometry, number theory, category theory, algebraic topology, homotopy theory, representation theory, dynamical systems, ergodic theory, harmonic analysis, linear and nonlinear partial differential equations, microlocal analysis, mathematical physics, spectral theory, numerical analysis, probability and statistics, stochastic analysis, coding and cryptography, image processing.

The laboratory, headed by Grégory Ginot, is structured into eight research teams:

The scientific activity of the laboratory is notably concretized by permanent or episodic seminars, as well as by the existence of the Mathematics Library. Finally, the laboratory aims to offer solid supervision to doctoral students from the Masters of the mathematics department of the University of Paris 13, other Masters of mathematics from the Paris region or the provinces, and possibly similar training abroad.

Last (pre)publications

  • Soeren Fournais, Yannick Guedes Bonthonneau, Léo Morin, Nicolas Raymond. Tunneling between magnetic wells in two dimensions. 2025. (hal-04966011⟩
  • Laurence Halpern, Jeffrey Rauch. Stability of Perfectly Matched Layers for Maxwell's Equations in Rectangular Solids. 2025. (hal-04049577v3⟩
  • Nina Aguillon, Emmanuel Audusse, Nelly Boulos, Martin Parisot. A comprehensive list of stationary solutions of shallow water models. 2025. (hal-05025901⟩
  • Gerold Alsmeyer, Yueyun Hu, Bastien Mallein. THE DERRIDA-RETAUX MODEL ON A GEOMETRIC GALTON-WATSON TREE. 2025. (hal-04929519⟩
  • Loth Damagui Chabi. Asymptotic blow-up behavior for the semilinear heat equation with non scale invariant nonlinearity. 2025. (hal-04701655v2⟩

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