arXiv · 1510.08003
Microscopic modeling of mass and charge distributions in the spontaneous fission of 240Pu
Abstract
In this letter, we outline a methodology to calculate microscopically mass and charge distributions of spontaneous fission yields. We combine the multi-dimensional minimization of collective action for fission with stochastic Langevin dynamics to track the relevant fission paths from the ground-state configuration up to scission. The nuclear potential energy and collective inertia governing the tunneling motion are obtained with nuclear density functional theory in the collective space of shape deformations and pairing. We obtain a quantitative agreement with experimental data and find that both the charge and mass distributions in the spontaneous fission of 240Pu are sensitive both to the dissipation in collective motion and to adiabatic characteristics.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jhilam Sadhukhan, Witold Nazarewicz, Nicolas Schunck. 2015-10-27. Microscopic modeling of mass and charge distributions in the spontaneous fission of 240Pu. https://doi.org/10.1103/physrevc.93.011304
Cite the original work for its findings. Save a collection to share your selection of sources.