Experiments to explore the influence of pulse shaping at the National Ignition Facility

The shaping of the drive pulse in time is a key tool in the design of fusion experiments that use inertia to confine burning plasmas. It is directly related to the adiabat and compressibility of the DT fuel and the characteristics of the laser and target that are needed to ignite. With this in mind,...

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Veröffentlicht in:Physics of plasmas 2020-11, Vol.27 (11), p.112708, Article 112708
Hauptverfasser: Thomas, C. A., Campbell, E. M., Baker, K. L., Casey, D. T., Hohenberger, M., Kritcher, A. L., Spears, B. K., Khan, S. F., Nora, R., Woods, D. T., Milovich, J. L., Berger, R. L., Strozzi, D., Ho, D. D., Clark, D., Bachmann, B., Benedetti, L. R., Bionta, R., Celliers, P. M., Fittinghoff, D. N., Grim, G., Hatarik, R., Izumi, N., Kyrala, G., Ma, T., Millot, M., Nagel, S. R., Patel, P. K., Yeamans, C., Nikroo, A., Tabak, M., Johnson, M. Gatu, Volegov, P. L., Finnegan, S. M.
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Sprache:eng
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Zusammenfassung:The shaping of the drive pulse in time is a key tool in the design of fusion experiments that use inertia to confine burning plasmas. It is directly related to the adiabat and compressibility of the DT fuel and the characteristics of the laser and target that are needed to ignite. With this in mind, we have performed experiments at the National Ignition Facility that test small changes in the shape of the pulse. In contrast to theory, we find implosions at lower adiabats can have reduced yield and areal density. We discuss implications to performance and the mechanism(s) that could be responsible.
ISSN:1070-664X
1089-7674
DOI:10.1063/5.0019193