Group “Statistical Physics and Condensed Matter”
The activities of the “Statistical Physics and Complex Systems” team cover a wide spectrum
of research topics.
One direction concerns the statistical physics of open quantum systems (out of equilibrium), and the development of models and analytical tools to study non-equilibrium steady states.
The team moreover focuses strongly on the statistical physics of complex systems and complex networks, from the study of their structure to the study of dynamical processes on networks, and is a pioneer in the study of temporal networks and hypergraphs.
Since the network paradigm can be used to describe many systems of different origins and natures, our research is interdisciplinary, including interactions with the social sciences, epidemiology, computer science, and neuroscience.
The team also participates in the Convergence Institute CENTURI and has developed a very dynamic activity towards life sciences. It hosts PIs partially funded by CENTURI, whose research topics concern collective effects and self-organization in living systems, cell mechanics, and neuroscience. They interact with experimental groups in particular at IBDM and INMED.
The methods used by the team members range from rigorous mathematical tools to numerical simulations and the analysis of empirical data, covering the full range of standard approximation tools in statistical physics.
| AGOSTINELLI | Cosimo | Ph.D. | Contact | |
| ASCH | Joachim | Research teacher | +33.4.91.26.95.20 | Contact |
| ASCHBACHER | Walter | Research teacher | +33.4.91.26.95.16 | Contact |
| BARRAT | Alain | Researcher Director | +33.4.91.26.95.40 | Contact |
| BREIER | Patrick | Visitor | Contact | |
| ESTAVOYER | Maxime | Post Ph.D. | Contact | |
| GAMBAUDO | Juliette | Ph.D. | Contact | |
| GANDOLFO | Daniel | Research teacher emeritus | +33.4.91.26.95.10 | Contact |
| GENOIS | Mathieu | Research teacher Team leader « Statistical Physics and Complex Systems » | +33.4.91.26.95.42 | Contact |
| IANNELLO | Ludovico | Ph.D. | Contact | |
| MANCASTROPPA | Marco | Post Ph.D. | Contact | |
| MAURIAL | Gabriel | Ph.D. | Contact | |
| MERKEL | Matthias | Researcher | +33.4.91.26.95.12 | Contact |
| PILLET | Claude-Alain | Research teacher | +33.4.91.26.95.32 | Contact |
| ROUAULT | Herve | Researcher | +33.4.91.26.95.13 | Contact |
| ROULEUX | Michel | Research teacher emeritus | +33.4.91.26.97.97 | Contact |
| RUPPRECHT | Jean-Francois | Researcher | +33.4.91.26.95.14 | Contact |
| VIEIRA-MENDES | Toni | Post Ph.D. | Contact | |
| VINZE | Prathmesh | Post Ph.D. | Contact | |
| WANG | Michael | Post Ph.D. | Contact | |
| ZETT | Lukas | Ph.D. | Contact |
Modeling vaccination campaigns and the Fall/Winter 2009 activity of the new A(H1N1) influenza in the Northern Hemisphere
Emerging Health Threats, 2009, 2, pp.e11. (10.3134/ehtj.09.011)
Central limit theorem for locally interacting Fermi gas
Communications in Mathematical Physics, 2009, 285 (1), pp.175-217. (10.1007/s00220-008-0610-6)
Gibbs Ensembles of Nonintersecting Paths
2008
A non-commutative Lévy-Cramér continuity theorem
Markov Processes And Related Fields, 2008, 16 (1), pp.59--78
The Green-Kubo formula for locally interacting open fermionic systems
Annales Henri Poincaré, 2007, 8 (6), pp.1013-1036. (10.1007/s00023-007-0327-7)
Transport properties of quasi-free Fermions
Journal of Mathematical Physics, 2007, 48, pp.032101-032128. (10.1063/1.2709849)
The Green-Kubo formula for the spin-fermion system
Communications in Mathematical Physics, 2006, 268 (2), pp.369-401. (10.1007/s00220-006-0095-0)
Mathematical Theory of the Wigner-Weisskopf Atom
J. Derezinski, H. Siedentop. Large Coulomb Systems, Springer/Lecture Notes in Physics 695, pp.145-215, 2006, Lecture Notes in Physics 695, (10.1007/b11607427)
On the strict positivity of entropy production
Transport and Spectral Problems in Quantum Mechanics: A Conference in Honor of Jean-Michel Combes, Sep 2006, Cergy, France. pp.153-163
Open Quantum Systems III
Springer/Lecture Notes in Mathematics 1882, pp.1-292, 2006, (10.1007/b128453)