Hard x-ray radiography with a 1D-imaging micro-flag backlighter driven by NIF-ARC
ORAL
Abstract
We present updated results from a further ARC shot (~2 kJ, 10 ps pulse) onto a 5-μm-thick dysprosium ‘micro-flag’ target which radiographs 100-μm-thick diamond-turned Pb test objects at high resolution, supported by analysis using the 3D Monte Carlo code GEANT4. We observe gradients in brightness, x-ray spectrum and resolution across the field of view which result primarily from the source geometry. By modeling the full 10-layer image plate detector stack and diagnostic housing we assess techniques such as image stacking for noise suppression in the context of reducing uncertainties in future dynamic strength experiments at NIF.
This work was performed under the auspices of the US Department of Energy by Lawrence Livermore National Laboratory under Contact No. DE-AC52-07NA27344.
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Publication: M. P. Hill et al., "Characterization of a 1D-imaging high-energy x-ray backlighter driven by NIF-ARC", submitted to Rev. Sci. Instrum.
Presenters
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Matthew P Hill
AWE Plc
Authors
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Matthew P Hill
AWE Plc
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Jackson G Williams
Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory, LLNL
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Daniel H Kalantar
Lawrence Livermore Natl Lab
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Benjamin Bachmann
Lawrence Livermore Natl Lab
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Riccardo Tommasini
LLNL, Lawrence Livermore Natl Lab
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David A Martinez
Lawrence Livermore Natl Lab
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Camelia V Stan
Lawrence Livermore Natl Lab
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Anna Murphy
Lawrence Livermore Natl Lab
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Matthew J Arend
Lawrence Livermore Natl Lab
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Gino A Mercado
Lawrence Livermore Natl Lab
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Henry C Wong
Lawrence Livermore Natl Lab
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Zach Dunn
Lawrence Livermore Natl Lab
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Thomas E Lockard
Lawrence Livermore Natl Lab
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Edward T Gumbrell
AWE Plc
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Robert E Rudd
Lawrence Livermore Natl Lab
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Korbie K Le Galloudec
Lawrence Livermore Natl Lab
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Bruce A Remington
Lawrence Livermore National Laboratory, Lawrence Livermore Natl Lab
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James M McNaney
Lawrence Livermore Natl Lab
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Hye-Sook Park
Lawrence Livermore Natl Lab, LLNL