Réunion d'hiver SMC 2026

Montréal, 11 - 14 décembre 2026

       

Index

Éducation :
Scientifique :
Affiches :
Sessions Spéciales :

Sessions scientifiques

La liste des sessions d'éducation figure au bas de la page.

Veuillez noter que les heures sont exprimées en heure normale de l'heure normale de l'Est (HNE).

Combinatoire algébrique: questions de longue date sur les fonctions symétriques
Org: Houcine Ben Dali (Harvard University), Angele Foley (Wilfrid Laurier University) et Alejandro Morales (Université de Québec à Montréal)
The enumerative side of algebraic combinatorics has long focused on various symmetric functions and the interplay between them. For example, a key research question has been to characterize properties of the coefficients that result when transforming from one basis to another. In this session we focus on some fundamental symmetric function questions, with a particular focus on recent advances on longstanding open problems such as conjectures on Jack polynomials (b-conjecture, matching Jack conjecture, and Stanley’s conjecture on Littlewood-Richardson coefficients), positivity conjectures of chromatic symmetric functions, and Delta conjectures from diagonal harmonics.
 
Aspects analytiques et combinatoires en géométrie convexe et discrète
Org: Károly Bezdek (University of Calgary, Canada), Fodor Ferenc (University of Szeged, Hungary and University of Calgary, Canada) et Alina Stacu (Concordia University, Canada)
This session will bring together researchers working in convex and discrete geometry from analytic and combinatorial perspectives, with emphasis on recent breakthroughs, geometric inequalities, packings and coverings, and applications to analysis and quantum information theory. It will be preceded by a CRM workshop featuring mini-courses and introductory lectures to prepare graduate students, postdoctoral researchers, and other early-career participants for the 2026 CMS Winter Meeting. Session speakers are encouraged to participate in the workshop, fostering interaction, mentoring, and collaboration across career stages.
 
Géométrie algébrique appliquée et calculatoire
Org: Taylor Brysiewicz (University of Western Ontario), Greg Smith (Queen's University) et Maksym Zubkov (University of British Columbia)
Polynomial systems are ubiquitous in mathematics, science, and engineering, making algebraic geometry a natural framework for studying their solution sets. This session will showcase recent developments in applied and computational algebraic geometry, ranging from the development of polynomial models for applications to symbolic and numerical methods for solving such systems.
 
Analyse harmonique: applications à la théorie des nombres, la théorie géometrique de la mesure, les EDP et plus
Org: Suresh Eswarathasan (Dalhousie University) et Chamsol Park (University of Rochester)
This session will be focused on the recent interplay of harmonic analysis with a variety of fields. Lectures will address, but are certainly not necessarily limited to, problems related to the Kakeya conjecture, local smoothing, eigenfunctions on compact manifolds, and prime counting.
 
Théorie combinatoire du design
Org: Andrea Burgess (University of New Brunswick Saint John) et Shuxing Li (University of Delaware)
Combinatorial design theory explores how simple local balance conditions can give rise to remarkably rich global structure—turning elementary arrangements of finite sets into objects of deep mathematical interest. Over the past decades, the field has grown into a vibrant cornerstone of discrete mathematics, with far-reaching connections to graph theory, finite geometry, coding theory, and cryptography. The talks in this session showcase some of the most exciting recent developments in the area, offering a glimpse into the breadth, depth, and continuing vitality of modern design theory.
 
Algèbre commutative
Org: Giulia Gaggero, Lisa Seccia et Adam Van Tuyl (McMaster University)
This special session is devoted to commutative algebra. Not only does commutative algebra contribute to the algebraic side of algebraic geometry, commutative algebra has connections to areas such as combinatorics, approximation theory, algebraic statistics, coding theory, and physics, among others. There is much collaboration going on between Canadian mathematicians and colleagues around the world on this topic, making such a session a great opportunity for the exchange of ideas.
 
Dynamique et symétrie
Org: Archishman Saha (Present: University of Ottawa. Starting August 24th, University of Michigan) et Cristina Stoica (Wilfrid Laurier University)
The aim of this session is to bring together researchers working in systems where symmetry is present. The scope includes both finite- and infinite-dimensional systems, such as ODEs, PDEs and non-local models. Possible topics include, but are not restricted to, bifurcations and stability, control, geometric and symmetry-preserving numerical methods and pattern formation. We welcome contributions involving applications to engineering systems, astrodynamics, coupled media (for example, fluid-elastic systems), fluid dynamics, plasma models, and other dynamical systems models displaying symmetry in the equations or analysis.
 
Chercheurs en début de carrière en théorie des graphes
Org: Kathie Cameron (Wilfrid Laurier University), Cicely Henderson (University of Waterloo) et Taite LaGrange (University of Waterloo)
Featuring talks from early-career graph theorists, including Master’s students, PhD students, recent graduates, and post-docs, this session will highlight developments from new talent in the field of graph theory. The talks will cover recent advancements in structural, algorithmic, and extremal graph theory from these up-and-coming researchers.
 
Problèmes géométriques pour les EDP
Org: Lia Bronsard et Kenneth DeMason (McMaster University)
This session brings together leading researchers and emerging scholars to present recent advances in partial differential equations arising from geometric problems. Topics include, but are not limited to, minimal surfaces, geometric measure theory, isoperimetric problems, liquid drop models, and harmonic maps on manifolds. Emphasis will be placed on new analytical techniques, qualitative properties of solutions, and connections between geometric structure and PDE behavior.
 
Les mathématiques de l'apprentissage machine
Org: Simone Brugiapaglia (Concordia) et Tim Hoheisel (McGill)
Machine learning is transforming research, industry, and policymaking, but many of its mathematical foundations remain poorly understood. Despite the success of methods such as deep learning, challenges related to interpretability, stability, and the theoretical understanding of optimization algorithms highlight important gaps between theory and practice. This session aims to bring together experts in the mathematics of machine learning to discuss these challenges, foster collaboration, and explore emerging ideas in this rapidly evolving field.
 
Horaire à déterminer
Nicholas Barnfield (Harvard)
Mehdi Dagdoug (McGill)
Ariel Goodwin (Cornell)
Marouane Il Idrissi (UQAM)
Rachel Morris (Concordia)
Janosch Ortmann (UQAM)
Gabriel Rioux (Imperial)
Min Wang (Houston)
Xuemeng Wang (Simon Fraser)
Laura Weidensager (Simon Fraser)
Andre Wibisono (Yale)
 
EDP non-linéaires et géométriques
Org: Joshua Flynn (Massachusetts Institute of Technology) et Jérôme Vétois (McGill University)
The session will focus on current developments in the study of nonlinear partial differential equations, and more particularly on equations arising from geometric problems. The session will cover topics such as, but not limited to, conformal and complex geometry, Yamabe and conformally invariant equations, optimal geometric functional inequalities, and applications to mathematical physics and relativity.
 
Ondes non-linéaires et EDP dispersives: Avancées récentes théoriques et calculatoires
Org: Yvonne Alama Bronsard (MIT) et Maria Ntekoume (Concordia University)
This scientific session highlights recent theoretical and computational advances in the study of nonlinear wave and dispersive partial differential equations (PDEs). The session will emphasize methods that exploit PDE integrability techniques, wave kinetic theory, and computer assisted proofs.
 
Théorie des nombres: passé, présent et futur
Org: Henri Darmon (McGill University), Yu-Ru Liu (University of Waterloo) et Carlo Pagano (Concordia University)
This special session will focus on recent developments in number theory broadly construed, and is envisaged as an addendum to the celebrated QVNTS (Quebec Vermont Number Theory Seminar) as it celebrates its quadracentennial as one of the longest continually running number theory seminars in North America.
 
Géométrie spectrale
Org: Maxime Fortier Bourque (Université de Montréal), Alexandre Girouard (Université Laval) et Lawford Hatcher (Université de Montréal)
Nous nous intéresserons au développements récents en géométrie spectrale interprétée dans un sens large: hautes énergies, inégalités géométriques, "hot spots", discrétisation, multiplicité des valeurs propres, etc.
 
Géométrie variationnelle, hyperboles critiques et systèmes hamiltoniens elliptiques
Org: Alessio Pomponio (Polytechnic University of Bari, Italy), Vicenţiu Rădulescu (Faculty of Applied Mathematics AGH University of Kraków, Poland and Simion Stoilow Institute of Math) et Leonard Shilgba (Admiralty University of Nigeria)
This session focuses on recent developments in elliptic Hamiltonian systems, variational methods, and nonlinear PDEs, with particular emphasis on critical hyperbolas, concentration phenomena, strong indefiniteness, and variational phase transitions. The session aims to bring together researchers working on elliptic systems, geometric analysis, critical point theory, and nonlocal operators in order to explore emerging directions connecting nonlinear analysis, PDEs, and dynamical systems

Sessions d'éducation

Affiches

Présentations par affiches des étudiants - AARMS-SMC

Sessions Spéciales

Plaidoyer pour l'inclusion en mathématiques à travers le Canada
Org: Angela Morrison (University of Calgary), Kyne Santos (Toronto Metropolitan University) et Amy Wiebe (University of British Columbia)
Equity, diversity, and inclusion (EDI) are integral to the framework of Canadian higher education. In this session, we gather leading advocates and organizers in the mathematical sciences to discuss the state-of-the-art strategies for supporting and improving inclusion across Canada.

This session is expected to discuss successful EDI initiatives, concrete strategies, and effective approaches towards building diverse and inclusive environments across the Canadian mathematics education landscape.


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