Binary contraction method for the construction of time-dependent dividing surfaces in driven chemical reactions R Bardakcioglu, A Junginger, M Feldmaier, J Main, R Hernandez Physical Review E 98 (3), 032204, 2018 | 38 | 2018 |
Invariant manifolds and rate constants in driven chemical reactions M Feldmaier, P Schraft, R Bardakcioglu, J Reiff, M Lober, M Tschöpe, ... The Journal of Physical Chemistry B 123 (9), 2070-2086, 2019 | 36 | 2019 |
Neural network approach to time-dependent dividing surfaces in classical reaction dynamics P Schraft, A Junginger, M Feldmaier, R Bardakcioglu, J Main, G Wunner, ... Physical Review E 97 (4), 042309, 2018 | 21 | 2018 |
Phase-space resolved rates in driven multidimensional chemical reactions M Feldmaier, R Bardakcioglu, J Reiff, J Main, R Hernandez The Journal of chemical physics 151 (24), 2019 | 18 | 2019 |
Controlling reaction dynamics in chemical model systems through external driving J Reiff, R Bardakcioglu, M Feldmaier, J Main, R Hernandez Physica D: Nonlinear Phenomena 427, 133013, 2021 | 5 | 2021 |
Time-dependent transition state theory to determine dividing surfaces and reaction rates in multidimensional systems R Bardakcioglu | 4 | 2018 |
Thermal decay rates of an activated complex in a driven model chemical reaction R Bardakcioglu, J Reiff, M Feldmaier, J Main, R Hernandez Physical Review E 102 (6), 062204, 2020 | 3 | 2020 |
Dynamics and Phase Space Structure for Reactions with Multiple Saddles J Reiff, R Bardakcioglu, M Tschöpe, M Feldmaier, J Main, G Wunner | | |