Shock Physics on the Sandia Z Pulsed Power Machine

Shock Physics on the Sandia Z Pulsed Power Machine

APS Physics via YouTube Direct link

Predicted energy gap at the peak states

28 of 29

28 of 29

Predicted energy gap at the peak states

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Shock Physics on the Sandia Z Pulsed Power Machine

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  1. 1 APS Topical Group on Shock Compression of Condensed Matter Virtual Seminar Series
  2. 2 Integration of theory, computation, and experiment
  3. 3 Advanced experimental platforms
  4. 4 Typical co-axial load on Z
  5. 5 Typical stripline load on Z
  6. 6 Pulsed power
  7. 7 Density Functional Theory
  8. 8 What do the Kohn-Sham equations look like?
  9. 9 First-principles molecular dynamics (FPMD)
  10. 10 Details of FPMD simulations
  11. 11 FPMD simulations of the hydrogen/deuterium Hugoniot
  12. 12 Let's not just pick on the theorists...
  13. 13 High-precision quartz standard
  14. 14 High-precision Hugoniot experiments for deuterium
  15. 15 Dissociation along the Hugoniot - Pair distribution function
  16. 16 Elevated electron temperature simulations
  17. 17 Insulator-metal transition at high-p and low-T
  18. 18 Experimental configuration
  19. 19 Representative data
  20. 20 Comparison of reflectivity from aluminum and deuterium
  21. 21 Wavelength dependence of reflectivity indicative of a metal
  22. 22 Liquid-liquid, insulator-to-metal transition (LL-IMT)
  23. 23 Insulator-metal transition at intermediate p and T
  24. 24 Reanalysis of inferred temperature states
  25. 25 Reanalysis of semiconducting model
  26. 26 Determination of the peak state of the system
  27. 27 Predicted conductivity at the peak states
  28. 28 Predicted energy gap at the peak states
  29. 29 Inconsistency of the PBE xc functional

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