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Improving model accuracy of National Ignition Facility fusion class laser using black-box optimization techniques

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Abstract

Experiments conducted at NIF require delivery of precisely shaped laser pulse to the target. To accurately deliver such shaped pulses, a high-fidelity laser model is crucial. We describe improvement in NIF laser model accuracy using black-box optimization technique.

© 2022 The Author(s)

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More Like This
The National Ignition Facility: Status and Performance of the World’s Largest Laser System for the High Energy Density and Inertial Confinement Fusion

C.A. Haynam, P. J. Wegner, G. M. Heestand, E. Moses, R. A. Sacks, M. W. Bowers, S. N. Dixit, G. V. Erbert, M. A. Henesian, M. R. Hermann, K. S. Jancaitis, K. Knittel, T. Kohut, K. R. Manes, C. D. Marshall, N. C. Mehta, J. Menapace, J. R. Murray, M. C. Nostrand, C. D. Orth, R. Patterson, R. Saunders, M. J. Shaw, M. Spaeth, S. B. Sutton, W. H. Williams, C. C. Widmayer, R. K. White, S. T. Yang, and B. M. Van Wonterghem
CFQ1 Conference on Lasers and Electro-Optics (CLEO:S&I) 2008

The National Ignition Facility and the Goal of Near-term Laser Fusion Energy

Edward I. Moses
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Enhancing the pulse shaping precision of energetic high aspect ratio infrared pulses in the National Ignition Facility laser system

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