arXiv · 1504.00153
Dynamics and thermodynamics of decay in charged clusters
Abstract
We propose a method for quantifying charge-driven instabilities in clusters, based on equilibrium simulations under confinement at constant external pressure. This approach makes no assumptions about the mode of decay and allows different clusters to be compared on an equal footing. A comprehensive survey of stability in model clusters of 309 Lennard-Jones particles augmented with Coulomb interactions is presented. We proceed to examine dynamic signatures of instability, finding that rate constants for ejection of charged particles increase smoothly as a function of total charge with no sudden changes. For clusters where many particles carry charge, ejection of individual charges competes with a fission process that leads to more symmetric division of the cluster into large fragments. The rate constants for fission depend much more sensitively on total charge than those for ejection of individual particles.
Explore related subjects
Keep this discovery
Mark A. Miller, David A. Bonhommeau, Christian P. Moerland, Sarah J. Gray, Marie-Pierre Gaigeot. 2015-04-01. Dynamics and thermodynamics of decay in charged clusters. https://doi.org/10.1080/00268976.2015.1037805
Cite the original work for its findings. Save a collection to share your selection of sources.