arXiv · 0905.2074
Time-dependent barrier passage of Two-dimensional non-Ohmic damping system
Abstract
The time-dependent barrier passage of an anomalous damping system is studied via the generalized Langevin equation (GLE) with non-Ohmic memory damping friction tensor and corresponding thermal colored noise tensor describing a particle passing over the saddle point of a two-dimensional quadratic potential energy surface. The time-dependent passing probability and transmission coefficient are analytically obtained by using of the reactive flux method. The long memory aspect of friction is revealed to originate a non-monotonic $δ$(power exponent of the friction) dependence of the passing probability, the optimal incident angle of the particle and the steady anomalous transmission coefficient. In the long time limit a bigger steady transmission coefficient is obtained which means less barrier recrossing than the one-dimensional case.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chun-Yang Wang. 2009-05-13. Time-dependent barrier passage of Two-dimensional non-Ohmic damping system. https://doi.org/10.1063/1.3194132
Cite the original work for its findings. Save a collection to share your selection of sources.