Analytic solutions for Rayleigh-Taylor growth rates in smooth density gradients
- 1 August 1988
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 38 (3) , 1433-1445
- https://doi.org/10.1103/physreva.38.1433
Abstract
The growth rate of perturbations on the shell of a laser fusion target can be estimated as √gk , where g is the shell acceleration and k is the transverse wave number of the perturbation. This formula overestimates the growth rate, and should be modified for the effects of density gradients and/or ablation of the unstable interface. The density-gradient effect is explored here analytically. With the use of variational calculus to explore all possible density profiles, the growth rate is shown to exceed √gk/(1+kL) , where L is a typical density-gradient scale length. Density profiles actually exhibiting this minimum growth rate are found.Keywords
This publication has 3 references indexed in Scilit:
- Density gradients to reduce fluid instabilities in multishell inertial-confinement-fusion targetsPhysical Review A, 1984
- Two-Dimensional Simulation of Fluid Instability in Laser-Fusion PelletsPhysical Review Letters, 1975
- Rayleigh-Taylor Instability and Laser-Pellet FusionPhysical Review Letters, 1974