Platform for absolute measurement of the compression of deuterium along isentropes to multi-TPa pressures
ORAL
Abstract
Equation of state models for deuterium and other light elements have traditionally been tested experimentally along Hugoniots, primarily the principal Hugoniot. The compression path of DT fuel in inertial confinement fusion (ICF) follows isentropes to very high density, where little experimental data measuring the compression exist. We are developing an experimental platform to compress deuterium along isentropes similar to the ICF paths using the National Ignition Facility. Our approach combines spherical geometry with multi-shock reverberation to achieve near isentropic compression to multi-TPa pressures that is diagnosed with radiographic techniques. Our plan is to measure compression paths relevant to current ICF platforms. We will describe details of the approach and preliminary data.
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Authors
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P. M. Celliers
Lawrence Livermore National Laboratory
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A. Fernandez-Panella
Lawrence Livermore National Laboratory
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S. Brygoo
CEA/DAM Bruyeres-le-Chatel, France
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D. C. Swift
Lawrence Livermore National Laboratory
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Suzanne Ali
Lawrence Livermore National Laboratory
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Steve Haan
Lawrence Livermore National Lab, Lawrence Livermore National Laboratory, LLNL
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M. Millot
Lawrence Livermore National Laboratory
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J. H. Eggert
Lawrence Livermore National Laboratory
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D. E. Fratanduono
Lawrence Livermore National Laboratory