ESPResSo 4.0 – an extensible software package for simulating soft matter systems

Publication date

2019-03-01

Authors

Weik, Florian
Weeber, Rudolf
Szuttor, Kai
Breitsprecher, Konrad
de Graaf, JoostISNI 0000000387930739
Kuron, Michael
Landsgesell, Jonas
Menke, Henri
Sean, David
Holm, Christian

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

ESPResSo is an extensible simulation package for research on soft matter. This versatile molecular dynamics program was originally developed for coarse-grained simulations of charged systems [H.J. Limbach et al., Comput. Phys. Commun. 174, 704 (2006)]. The scope of the software has since broadened considerably: ESPResSo can now be used to simulate systems with length scales spanning from the molecular to the colloidal. Examples include, self-propelled particles in active matter, membranes in biological systems, and the aggregation of soot particles in process engineering. ESPResSo also includes solvers for hydrodynamic and electrokinetic problems, both on the continuum and on the explicit particle level. Since our last description of version 3.1 [A. Arnold et al., Meshfree methods for partial di_erential equations VI, Lect. Notes Comput. Sci. Eng. 89, 1 (2013)], the software has undergone considerable restructuring. The biggest change is the replacement of the Tcl scripting interface with a much more powerful Python interface. In addition, many new simulation methods have been implemented. In this article, we highlight the changes and improvements made to the interface and code, as well as the new simulation techniques that enable a user of ESPResSo 4.0 to simulate physics that is at the forefront of soft matter research.

Keywords

Taverne, General Materials Science, General Physics and Astronomy, Physical and Theoretical Chemistry

Citation

Weik, F, Weeber, R, Szuttor, K, Breitsprecher, K, de Graaf, J, Kuron, M, Landsgesell, J, Menke, H, Sean, D & Holm, C 2019, 'ESPResSo 4.0 – an extensible software package for simulating soft matter systems', European Physical Journal: Special Topics, vol. 227, no. 14, pp. 1789-1816. https://doi.org/10.1140/epjst/e2019-800186-9