Replicating the Z iron opacity experiments on the NIF

X-ray opacity is a crucial factor of all radiation-hydrodynamics calculations, yet it is one of the least validated of the material properties in the simulation codes. Recent opacity experiments at the Sandia Z-machine have shown up to factors of two discrepancies between theory and experiment, cast...

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Veröffentlicht in:High energy density physics 2017-06, Vol.23 (C), p.223-227
Hauptverfasser: Perry, T.S., Heeter, R.F., Opachich, Y.P., Ross, P.W., Kline, J.L., Flippo, K.A., Sherrill, M.E., Dodd, E.S., DeVolder, B.G., Cardenas, T., Archuleta, T.N., Craxton, R.S., Zhang, R., McKenty, P.W., Garcia, E.M., Huffman, E.J., King, J.A., Ahmed, M.F., Emig, J.A., Ayers, S.L, Barrios, M.A., May, M.J., Schneider, M.B., Liedahl, D.A., Wilson, B.G., Urbatsch, T.J., Iglesias, C.A., Bailey, J.E., Rochau, G.A.
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Sprache:eng
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Zusammenfassung:X-ray opacity is a crucial factor of all radiation-hydrodynamics calculations, yet it is one of the least validated of the material properties in the simulation codes. Recent opacity experiments at the Sandia Z-machine have shown up to factors of two discrepancies between theory and experiment, casting doubt on the validity of the opacity models. Therefore, a new experimental opacity platform is being developed on the National Ignition Facility (NIF) not only to verify the Z-machine experimental results but also to extend the experiments to other temperatures and densities. The first experiments will be directed towards measuring the opacity of iron at a temperature of ∼160eV and an electron density of ∼7 ×1021 cm−3. Preliminary experiments on NIF have demonstrated the ability to create a sufficiently bright point backlighter using an imploding plastic capsule and also a hohlraum that can heat the opacity sample to the desired conditions. The first of these iron opacity experiments is expected to be performed in 2017.
ISSN:1574-1818
1878-0563
DOI:10.1016/j.hedp.2017.05.006