Article citationsMore>>
C. C. Kuranz, R. P. Drake, D. R. Leibrandt, E. C. Harding, H. F. Robey, A. R. Miles, B. E. Blue, J. F. Hansen, H. Louis, M. Bono, J. Knauer, D. Arnett and C. A. Meakin, “Progress toward the Study of Laboratory Scale, Astrophysically Relevant, Turbulent Plasmas,” Astrophysics and Space Science, Vol. 298, No. 1-2, 2005, pp. 9-16.
doi:10.1007/s10509-005-3906-4
has been cited by the following article:
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TITLE:
Similarity of Rayleigh-Taylor Instability Development on Scales from 1 mm to One Light Year
AUTHORS:
Michael C. Kelley, Eugene Dao, Carolyn Kuranz, Hans Stenbaek-Nielsen
KEYWORDS:
Rayleigh-Taylor Instability, Decelerating Fluid, Exploding Star, Active Experiment
JOURNAL NAME:
International Journal of Astronomy and Astrophysics,
Vol.1 No.4,
December
19,
2011
ABSTRACT: In this paper, we describe three different phenomena occurring on scales of 1 mm, 100 km, and almost a light year. The smallest scale is a laboratory experiment. The intermediate scale is a rocket-borne space experiment and the largest is an exploding star. In each case, deceleration creates a situation that is unstable to the Rayleigh-Taylor instability. The similarity exists in the spatial and in the Fourier domains; that is, not only are there obvious spatial similarities but the power spectra of the two phenomena are also nearly identical. The data compare favorably to published simulations.