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Performance of indirectly driven capsule implosions on NIF using adiabat-shaping

  • H. F. Robey
  • , V. A. Smalyuk
  • , J. L. Milovich
  • , T. Döppner
  • , D. T. Casey
  • , K. L. Baker
  • , J. L. Peterson
  • , B. Bachmann
  • , L. F.Berzak Hopkins
  • , E. Bond
  • , J. A. Caggiano
  • , D. A. Callahan
  • , P. M. Celliers
  • , C. Cerjan
  • , D. S. Clark
  • , S. N. Dixit
  • , M. J. Edwards
  • , N. Gharibyan
  • , S. W. Haan
  • , B. A. Hammel
  • A. V. Hamza, R. Hatarik, O. A. Hurricane, K. S. Jancaitis, O. S. Jones, G. D. Kerbel, J. J. Kroll, K. N. Lafortune, O. L. Landen, T. Ma, M. M. Marinak, B. J. Macgowan, A. G. Macphee, A. Pak, M. Patel, P. K. Patel, L. J. Perkins, D. B. Sayre, S. M. Sepke, B. K. Spears, R. Tommasini, C. R. Weber, C. C. Widmayer, C. Yeamans, E. Giraldez, D. Hoover, A. Nikroo, M. Hohenberger, M. Gatu Johnson

Research output: Contribution to journalConference articlepeer-review

Abstract

A series of indirectly driven capsule implosions has been performed on the National Ignition Facility to assess the relative contributions of ablation-front instability growth vs. fuel compression on implosion performance. Laser pulse shapes for both low and high-foot pulses were modified to vary ablation-front growth & fuel adiabat, separately and controllably. Two principal conclusions are drawn from this study: 1) It is shown that an increase in laser picket energy reduces ablation-front instability growth in low-foot implosions resulting in a substantial (3-10X) increase in neutron yield with no loss of fuel compression. 2.) It is shown that a decrease in laser trough power reduces the fuel adiabat in high-foot implosions results in a significant (36%) increase in fuel compression together with no reduction in neutron yield. These results taken collectively bridge the space between the higher compression low-foot results and the higher yield high-foot results.

Original languageEnglish (US)
Article number012045
JournalJournal of Physics: Conference Series
Volume717
Issue number1
DOIs
StatePublished - May 26 2016
Externally publishedYes
Event9th International Conference on Inertial Fusion Sciences and Applications, IFSA 2015 - Seattle, United States
Duration: Sep 20 2015Sep 25 2015

All Science Journal Classification (ASJC) codes

  • General Physics and Astronomy

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