Toward a physics design for NDCX-II, a next-step platform for ion beam-driven physics studies

ORAL

Abstract

The Heavy Ion Fusion Science Virtual National Laboratory, a collaboration of LBNL, LLNL, and PPPL, is studying Warm Dense Matter physics driven by ion beams, and basic target physics for heavy ion-driven Inertial Fusion Energy. A low-cost path toward the next-step facility for this research, NDCX-II, has been enabled by the recent donation of induction cells and associated hardware from the decommissioned Advanced Test Accelerator (ATA) facility at LLNL. We are using a combination of analysis, an interactive one-dimensional kinetic simulation model, and multidimensional Warp-code simulations to develop a physics design concept for the NDCX-II accelerator section. A 30-nC pulse of singly charged Li ions is accelerated to $\sim $3 MeV, compressed from $\sim $500 ns to $\sim $1 ns, and focused to a sub-mm spot. We present the novel strategy underlying the acceleration schedule and illustrate the space-charge-dominated beam dynamics graphically.

*Work performed under auspices of U.S. DoE by LLNL under Contract DE-AC52-07NA27344 and by LBNL under Contract DE-AC03-76SF00098.

Authors

  • A. Friedman

    • LLNL
  • D.P. Grote

    • Lawrence Livermore National Laboratory
    • LLNL
  • W.M. Sharp

    • Lawrence Livermore National Laboratory
    • LLNL
  • E. Henestroza

    • Lawrence Berkeley National Laboratory
    • LBNL
  • M. Leitner

    • Lawrence Berkeley National Laboratory
    • LBNL
  • B. Grant Logan

    • LBNL
  • W.L. Waldron

    • Lawrence Berkeley National Laboratory
    • LBNL