62 results on '"Eggert J"'
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2. X-Ray Diffraction of Ramp-Compressed Silicon to 390 GPa
3. Ramp compression of tantalum to multiterapascal pressures: Constraints of the thermal equation of state to 2.3 TPa and 5000 K
4. X-ray diffraction measurements and pressure determination in nanosecond compression of solids up to 600 GPa
5. Experimental Observations of Laser-Driven Tin Ejecta Microjet Interactions
6. Metastability of Liquid Water Freezing into Ice VII under Dynamic Compression
7. Shock-compressed silicon: Hugoniot and sound speed up to 2100 GPa
8. Equation of State of CO2 Shock Compressed to 1 TPa
9. Recovery of a high-pressure phase formed under laser-driven compression
10. Measurements of pressure-induced Kβ line shifts in ramp compressed cobalt up to 8 Mbar
11. Probing the Solid Phase of Noble Metal Copper at Terapascal Conditions
12. Nonisentropic Release of a Shocked Solid
13. Measurement of Body-Centered Cubic Gold and Melting under Shock Compression
14. Identification of Phase Transitions and Metastability in Dynamically Compressed Antimony Using Ultrafast X-Ray Diffraction
15. Shock Compression of Liquid Deuterium up to 1 TPa
16. In situ observation of a phase transition in silicon carbide under shock compression using pulsed x-ray diffraction
17. Developing quartz and molybdenum as impedance-matching standards in the 100-Mbar regime
18. Thermodynamic properties of MgSiO3 at super-Earth mantle conditions
19. Measuring the shock impedance mismatch between high-density carbon and deuterium at the National Ignition Facility
20. Erratum: Measurement of Body-Centered-Cubic Aluminum at 475 GPa [Phys. Rev. Lett. 119 , 175702 (2017)]
21. Measurement of Body-Centered-Cubic Aluminum at 475 GPa
22. Shock equation of state of LiH6 to 1.1 TPa
23. Erratum: Evidence for a Phase Transition in Silicate Melt at Extreme Pressure and Temperature Conditions [Phys. Rev. Lett. 108 , 065701 (2012)]
24. Hugoniot and release measurements in diamond shocked up to 26 Mbar
25. Ultrafast X-Ray Diffraction Studies of the Phase Transitions and Equation of State of Scandium Shock Compressed to 82 GPa
26. Dynamic compression of copper to over 450 GPa: A high-pressure standard
27. Direct Observation of Melting in Shock-Compressed Bismuth With Femtosecond X-ray Diffraction
28. X-Ray Diffraction of Solid Tin to 1.2 TPa
29. Solid Iron Compressed Up to 560 GPa
30. Orientation and rate dependence in high strain-rate compression of single-crystal silicon
31. Extended data set for the equation of state of warm dense hydrogen isotopes
32. Equation of state of CH1.36: First-principles molecular dynamics simulations and shock-and-release wave speed measurements
33. Assembly of High-Areal-Density Deuterium-Tritium Fuel from Indirectly Driven Cryogenic Implosions
34. Precision Shock Tuning on the National Ignition Facility
35. Erratum: Laser-driven single shock compression of fluid deuterium from 45 to 220 GPa [Phys. Rev. B79, 014112 (2009)]
36. Evidence for a Phase Transition in Silicate Melt at Extreme Pressure and Temperature Conditions
37. Insulator-to-Conducting Transition in Dense Fluid Helium
38. Strength effects in diamond under shock compression from 0.1 to 1 TPa
39. Phase diagrams and isotopic effects of normal and deuterated water studied via x-ray diffraction up to 4.5 GPa and 500 K
40. Diamond at 800 GPa
41. Laser-driven single shock compression of fluid deuterium from 45 to 220 GPa
42. High-precision measurements of the diamond Hugoniot in and above the melt region
43. Ultrafast Dynamic Compression Technique to Study the Kinetics of Phase Transformations in Bismuth
44. Hugoniot Data for Helium in the Ionization Regime
45. Analysis of the x-ray diffraction signal for theα−ϵtransition in shock-compressed iron: Simulation and experiment
46. Dissociation of Liquid Silica at High Pressures and Temperatures
47. EXAFS Measurement of Iron bcc-to-hcp Phase Transformation in Nanosecond-Laser Shocks
48. Direct Observation of theα−εTransition in Shock-Compressed Iron via Nanosecond X-Ray Diffraction
49. Shock Compressing Diamond to a Conducting Fluid
50. Shock-Induced Transformation ofAl2O3and LiF into Semiconducting Liquids
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