1990Plasma Physics and Controlled FusionRequires access

Symmetry in inertial confinement fusion implosion

S. Nakai

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Abstract

A high density implosion of a hollow shell pellet by a GEKKO XII glass laser has been carefully diagnosed to clarify the relation between the achievable density and possible nonuniformities. The density achieved, 600 times solid density, has been well interpreted with the experimental conditions of pellet and laser intensity uniformity.

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What this paper is about

A high density implosion of a hollow shell pellet by a GEKKO XII glass laser has been carefully diagnosed to clarify the relation between the achievable density and possible nonuniformities. The density achieved, 600 times solid density, has been well interpreted with the experimental conditions of pellet and laser intensity uniformity.

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Available abstract

A high density implosion of a hollow shell pellet by a GEKKO XII glass laser has been carefully diagnosed to clarify the relation between the achievable density and possible nonuniformities. The density achieved, 600 times solid density, has been well interpreted with the experimental conditions of pellet and laser intensity uniformity.

Key concepts: Implosion, Inertial confinement fusion, Pellet, Laser, Materials science, Area density, Plasma, Physics

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