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Modeling of Chemical Reaction Systems with Detailed Balance Using Gradient Structures
Jan Maas1, Alexander Mielke2,3
1Institute of Science and Technology Austria (IST Austria), Am Campus 1, 3400 Klosterneuburg, Austria.
Abstract:
We consider various modeling levels for spatially homogeneous chemical reaction systems, namely the chemical master equation, the chemical Langevin dynamics, and the reaction-rate equation. Throughout we restrict our study to the case where the microscopic system satisfies the detailed-balance condition. The latter allows us to enrich the systems with a gradient structure, i.e. the evolution is given by a gradient-flow equation. We present the arising links between the associated gradient structures that are driven by the relative entropy of the detailed-balance steady state. The limit of large volumes is studied in the sense of evolutionary -convergence of gradient flows. Moreover, we use the gradient structures to derive hybrid models for coupling different modeling levels.
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