JProf. Dr. Shahnaz Farhat
Contact Information
Universität Tübingen
Fachbereich Mathematik
AB Mathematische Physik
Auf der Morgenstelle 10
72076 Tübingen
Room: C4 P34
Tel: +49 (0)7071 29 78672
E-Mail: shahnaz.farhatuni-tuebingen.de
Teaching
- International Mathematics Competition Training
Research Interests
My research lies in mathematical physics, at the interface of partial differential equations, functional analysis, probability, and quantum many-body theory. I am particularly interested in semiclassical and multiscale analysis, transport and kinetic equations, quantum many-body systems, equilibrium and Gibbs states, and mean-field limits.
Current Research
My current research focuses on semiclassical analysis, equilibrium and Gibbs states, quantum many-body systems, and mean-field approximations. A central theme is the rigorous derivation of effective macroscopic or classical descriptions from microscopic quantum models, both in dynamical and equilibrium settings.
Publications
-
Invariant measures as probabilistic tools in the analysis of nonlinear ODEs and PDEs (2022)
With Zied Ammari and Vedran Sohinger.
Published in the Springer INDAM Series proceedings. -
A paradigm for the creation of scales and phases in nonlinear evolution equations (2022)
With Christophe Cheverry.
Published in the Electronic Journal of Differential Equations. -
Long-time gyrokinetic equations (2023)
With Christophe Cheverry.
Published in the Quarterly of Applied Mathematics. -
Almost sure existence of global solutions for general initial value problems (2023)
With Zied Ammari and Vedran Sohinger.
Published in Advances in Mathematics. -
Quantum-classical motion of charged particles interacting with scalar fields (2024)
Published in the Journal of Mathematical Physics (Editor’s Pick). -
Expansion of the Many-body Quantum Gibbs State of the Bose–Hubbard Model on a Finite Graph (2024)
With Zied Ammari and Sören Petrat.
Published in Documenta Mathematica. -
Mean-Field Dynamics of the Bose–Hubbard Model in High Dimension (2025)
With Denis Périce and Sören Petrat.
Accepted, to appear in Annales Henri Poincaré.
arXiv:2501.05304 -
Ground state energy of the Bose–Hubbard model with large coordination number with a polaron-type quantum de Finetti theorem (2026)
With Denis Périce and Sören Petrat.
arXiv:2603.29562 -
A perturbative microscopic derivation of the focusing (\Phi^6_1) measure with rough cut-off (2026)
With Andrew Rout.
arXiv:2607.20400
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