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Temporal evolution of multi-ion and kinetic effects in DT3He gas-filled shock- and ablatively-driven implosions on OMEGA

ORAL

Abstract

Prior research demonstrates an inability of both theory and simulation to adequately predict yields and other key implosion metrics as implosion dynamics become more kinetic. Here, a set of three experiments are compared to establish a timeline for the impact of multi-ion/kinetic effects on a given implosion. Both thin (2.8 um) and thick (6 um) DT3He gas-filled Hoppe glass shells were used, providing shock- and ablatively-driven implosions, respectively. Initial fill densities and laser drive were varied to control the effective Knudsen number and determine the extent to which hydrodynamic or kinetic physics dominated. Each experiment was simulated using both 1D hydrodynamic and multi-ion simulation codes to define the hydrodynamically expected behavior of the capsules under the test conditions. Yields, reaction histories and ion temperatures were then compared to quantify the impact of multi-ion and kinetic physics specifically during the shock-convergence and compression phases of an ICF implosion.

Presenters

  • Tucker E Evans

    Massachusetts Institute of Technology MI

Authors

  • Tucker E Evans

    Massachusetts Institute of Technology MI

  • Patrick J Adrian

    Massachusetts Institute of Technology (MIT)

  • Graeme D Sutcliffe

    Massachusetts Institute of Technology

  • Brandon J Lahmann

    Lawrence Livermore National Laboratory

  • Jacob A Pearcy

    Massachusetts Institute of Technology

  • Benjamin Reichelt

    MIT, Massachusetts Institute of Technology

  • Cody W Chang

    Massachusetts Institute of Technology MI

  • Skylar G Dannhoff

    Massachusetts Institute of Technology MI

  • Maria Gatu-Johnson

    MIT

  • Chikang Li

    Massachusetts Institute of Technology MIT

  • Richard D Petrasso

    Massachusetts Institute of Technology MIT

  • Johan A Frenje

    Massachusetts Institute of Technology MIT

  • Christian Stoeckl

    University of Rochester

  • Vladimir Glebov

    Lab for Laser Energetics, University of Rochester

  • Chad J Forrest

    LLE, Lab for Laser Energetics, University of Rochester, University of Rochester, Laboratory for Laser Energetics, Laboratory for Laser Energetics

  • Neel V Kabadi

    University of Rochester

  • Enac Gallardo-Diaz

    University of Nevada Reno

  • Roberto C Mancini

    University of Nevada, Reno