Hydrodynamic Instabilities to Measure MgO Viscosity at High Pressures
ORAL
Abstract
*This work is supported by the NSF GRFP under Grant No. DGE 1256260, the U.S. DOE, Office of Science, Office of Fusion Energy Sciences-NNSA Joint Program in HEDP Laboratory Plasmas program under Award Number DE-SC0023341, LLNL under subcontract B632749, and by ACCESS which is supported by NSF grants #2138259, #2138286, #2138307, #2137603, and #2138296. Part of this work was prepared by LLNL under Contract DE-AC52-07NA27344.
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Publication: 1. T. Perez, S. Dick, R.F. Smith, P.M. Celliers, J.H. Eggert, S.J. Ali, M. Millot, F. Coppari, E. Johnsen, and J.K. Wicks. A new method to measure the viscosity of MgO at high pressures and strain rates using Richtmyer-Meshkov instabilities and velocimetry. In preparation, 2024.
2. S. Dick, T. Perez, R.F. Smith, P.M. Celliers, J.H. Eggert, S.J. Ali, M. Millot, F. Coppari, J.K. Wicks, and E. Johnsen. Numerical Modeling of Laser-Driven Richtmyer-Meshkov in Condensed Matter to Measure MgO Viscosity. In preparation, 2024.
Presenters
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Sonya C Dick
- University of Michigan