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Comparison of Rayleigh-Taylor Growth with 1.0 Micrometers and 0.25 Micrometers Lasers.

Author: M H Emery; J H Gardner; S E Bodner; NAVAL RESEARCH LAB WASHINGTON DC.
Publisher: Ft. Belvoir Defense Technical Information Center 29 MAY 1986.
Edition/Format:   Print book : English
Database:WorldCat
Summary:
It is shown, through numerical simulation that the Rayleigh-Taylor growth rate in laser-ablatively accelerated targets is reduced below the classical value (kg) to the 1/2 power, by factors of 3-4 with 0.25 micrometer laser light. The simulation results are supported by an analytical expression for the growth rates. These results provide further evidence for the viability of high-aspect ratio shells in direct-drive  Read more...
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Document Type: Book
All Authors / Contributors: M H Emery; J H Gardner; S E Bodner; NAVAL RESEARCH LAB WASHINGTON DC.
OCLC Number: 227679342
Description: 13 pages

Abstract:

It is shown, through numerical simulation that the Rayleigh-Taylor growth rate in laser-ablatively accelerated targets is reduced below the classical value (kg) to the 1/2 power, by factors of 3-4 with 0.25 micrometer laser light. The simulation results are supported by an analytical expression for the growth rates. These results provide further evidence for the viability of high-aspect ratio shells in direct-drive laser fusion. Keywords: Laser ablation, Hydrodynamic instability.

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