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20182021
most citedInvariant Manifolds and Rate Constants in Driven Chemical Reactions

27 citations · 45 across the 4 of their papers we have counts for

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physics.chem-ph2021★ 5 cited

Controlling reaction dynamics in chemical model systems through external driving

Johannes Reiff, Robin Bardakcioglu, Matthias Feldmaier +2

The rate of a chemical reaction can often be determined by the properties of a rank-1 saddle and the associated transition state separating reactants and products. We have found ev…

physics.chem-ph2021★ 1 cited

Thermal decay rates of an activated complex in a driven model chemical reaction

Robin Bardakcioglu, Johannes Reiff, Matthias Feldmaier +2

Recent work has shown that in a non-thermal, multidimensional system, the trajectories in the activated complex possess different instantaneous and time-averaged reactant decay rat…

physics.chem-ph2020★ 12 cited

Phase-space resolved rates in driven multidimensional chemical reactions

Matthias Feldmaier, Robin Bardakcioglu, Johannes Reiff +2

Chemical reactions in multidimensional driven systems are typically described by a time-dependent rank-1 saddle associated with one reaction and several orthogonal coordinates (inc…

physics.chem-ph2019★ 27 cited

Invariant Manifolds and Rate Constants in Driven Chemical Reactions

Matthias Feldmaier, Philippe Schraft, Robin Bardakcioglu +7

Reaction rates of chemical reactions under nonequilibrium conditions can be determined through the construction of the normally hyperbolic invariant manifold (NHIM) [and moving div…

physics.chem-ph2018

Binary contraction method for the construction of time-dependent dividing surfaces in driven chemical reactions

Robin Hobil Bardakcioglu, Andrej Junginger, Matthias Feldmaier +2

Transition state theory formally provides a simplifying approach for determining chemical reaction rates and pathways. Given an underlying potential energy surface for a reactive s…