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Reconstruction of Three-Dimensional Core Structures in Inertial Confinement Fusion Implosion Experiments Using a Convolutional Neural Network Model

POSTER

Abstract

The performance of inertial confinement fusion (ICF) implosions is highly dependent on the properties of the core, the high-temperature central region. The capability of reconstructing 3-D core structures is crucial for understanding 3-D hot-spot formation and providing 3-D metrics to quantify ICF implosion performance. A deep-learning convolutional neural network (CNN) model was developed to reconstruct 3-D hot-spot and shell structures in ICF experiments. The training data were provided by DEC3D deceleration-phase simulations, which model perturbed hot spots in OMEGA cryogenic implosions. The CNN model is trained with synthetic x-ray images at multiple lines of sight to create a nonlinear mapping of 3-D hydrodynamic profiles. The model was validated using a 3-D hot-spot reconstruction method.[1] Good agreement was obtained in reconstructed 3-D hot-spot plasma emissivity profiles by mapping 2-D measured x-ray images from different lines of sight. The physics-informed CNN model is applied to reconstruct 3-D mass-density profiles based on x-ray image measurements, providing a new pathway to study 3-D areal-density and hot-spot shape asymmetries.

Publication: [1] K. M. Woo et al., Phys. Plasmas 29, 082705 (2022).

Presenters

  • Ka Ming Woo

    Laboratory for Laser Energetics

Authors

  • Ka Ming Woo

    Laboratory for Laser Energetics

  • Kristen Churnetski

    University of Rochester

  • Riccardo Betti

    Laboratory for Laser Energy, Rochester, NY, USA., University of Rochester, LLE, Univ of Rochester

  • Cliff A Thomas

    Laboratory for Laser Energetics, University of Rochester, Laboratory for Laser Energetics, U. of Rochester, Laboratory for Laser Energetics, University of Rochester, University of Rochester Laboratory for Laser Energetics (LLE), LLE

  • Christian Stoeckl

    University of Rochester

  • Peter V Heuer

    Laboratory for Laser Energetics

  • Jonathan Carroll-Nellenback

    jonathan.carroll@rochester.edu, University of Rochester, Laboratory for Laser Energetics

  • Kenneth Anderson

    Laboratory for Laser Energetics, U. of Rochester, Laboratory for Laser Energetics

  • Joseph S Buck

    Brigham Young University