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- People
- Organisation
- Members
- Dr. Denis Andrienko
- Prof. Dr.-Ing. André Brinkmann
- Prof. Dr. Michele Cascella
- Dr. Robin Cortes-Huerto
- Dr. Kostas Daoulas
- Prof. Dr. Gregor Diezemann
- Prof. Dr. Burkhard Dünweg
- Prof. Dr. Herbert Egger
- Prof. Dr. Jürgen Gauss
- Prof. Dr. Martin Hanke-Bourgeois
- Jun.-Prof. Dr. Lisa Hartung
- Prof. Dr. Kurt Kremer
- Dr. Oleksandra Kukharenko
- Prof. Dr. Benno Liebchen
- Prof. Dr. Maria Lukáčová
- Prof. Dr. Florian Müller-Plathe
- Dr. Arash Nikoubashman
- Prof. Dr.-Ing. Martin Oberlack
- Dr. Joseph F. Rudzinski
- Prof. Dr. Friederike Schmid
- Prof. Dr. Thomas Speck
- Dr. Lukas Stelzl
- Dr. Stella Stopkowicz
- Dr. Torsten Stühn
- Prof. Dr. Nico van der Vegt
- Dr. Peter Virnau
- Prof. Dr. Michael Vogel
- Prof. Dr. Michael Wand
- Prof. Dr. Yongqi Wang
- Collaborators
- Prof. Dr. Markus Bachmayr
- Dr. Tristan Bereau
- Prof. Dr. Davide Donadio
- Dr. Sara Jabbari Farouji
- Dr. Alf Gerisch
- Prof. Dr. Andreas Hildebrandt
- Prof. Dr. Jens Lang
- Dr. Frédéric Leroy
- Dr. Yuki Nagata
- Dr. Raffaello Potestio
- Prof. Dr. Thorsten Raasch
- Dr. Giovanni Settanni
- Prof. Dr. Marialore Sulpizi
- Prof. Dr. Omar Valsson
- Projects
- Projects – A: Dynamics
- Project A2: Dynamically consistent coarse-grained models
- Project A3: Coarse-graining frequency-dependent phenomena and memory in colloidal systems
- Project A4 (E): Understanding Water Relaxation Dynamics at Interfaces
- Project A5 (E): Heat transfer in polymer nanocomposites
- Project A6: Coarse-grained models for dynamically asymmetric liquid mixtures under non-equilibrium conditions
- Project A7: Dynamical coarse-graining for non-equilibrium steady states with stochastic dynamics
- Project A8: Roberto – Improved dynamics in hybrid particle-field molecular dynamics simulations of polymers
- Project A9: Coarse grained non-equilibrium dynamics of active soft matter
- Project A10 (N): Population control of multiple walker simulations via a birth/death process
- Projects B: Particle based coarse-graining and mixed resolution schemes
- Project B1: Inverse problems in coarse-grained particle simulations
- Project B2: Many-body effects and optimized mapping schemes for systematic coarse-graining
- Project B3: Coarse-graining of solvent effects in force-probe molecular dynamics simulation
- Project B4: Equilibrium and non-equilibrium processes in open systems via adaptive resolution simulations
- Project B5: Multi-resolution methods including quantum chemistry, force fields, and hybrid particle-field schemes
- Project B6: Topological validation of coarse-grained polymer models
- Project B7: Automated model building and representation learning for multiscale simulations
- Project B8 (N): Hydrodynamic Simulation of Passive and Active Janus Particles
- Projects – C: Bridging the particle-continuum gap
- Project C1: Using molecular fields to bridge between particle and continuum representations of macromolecular systems
- Project C3: Spinodal decomposition of polymer-solvent systems
- Project C4 (E): Coarse-graining frequency-dependent phenomena and memory in colloidal systems
- Project C5: Adaptive hybrid multiscale simulations of soft matter fluids
- Project C6 (E): Linking hydrodynamics and microscopic models of wet active matter with anisotropic particles
- Project C7: Dense active suspensions in the chaotic regime
- Project C8: Numerical approximation of high-dimensional Fokker-Planck equations
- Project G: Central soft matter simulation platform
- Projects – A: Dynamics
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