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Observation of self-similar behavior of the 3D, nonlinear Rayleigh-Taylor instability
Authors:Sadot O  Smalyuk V A  Delettrez J A  Meyerhofer D D  Sangster T C  Betti R  Goncharov V N  Shvarts D
Institution:Laboratory for Laser Energetics, University of Rochester, New York 14623, USA.
Abstract:The Rayleigh-Taylor unstable growth of laser-seeded, 3D broadband perturbations was experimentally measured in the laser-accelerated, planar plastic foils. The first experimental observation showing the self-similar behavior of the bubble size and amplitude distributions under ablative conditions is presented. In the nonlinear regime, the modulation sigma(rms) grows as alpha(sigma)gt(2), where g is the foil acceleration, t is the time, and alpha(sigma) is constant. The number of bubbles evolves as N(t) alpha(omegat sq.rt(9) + C)(-4) and the average size evolves as (t) alpha omega(2)gt(2), where C is a constant and omega = 0.83 +/- 0.1 is the measured scaled bubble-merging rate.
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