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Autor:
W. J. Nellis
Publikováno v:
The Journal of Physical Chemistry Letters. 12:7972-7981
Metallic hydrogen has been a major issue in physical chemistry since its prediction in 1935. Its predicted density implies 100 GPa (106 bar = Mbar) pressures P are needed to make metallic H with the Fermi temperature TF = 220 000 K. Temperatures T ca
Autor:
W. J. Nellis
Publikováno v:
Low Temperature Physics. 45:294-296
Ultracondensed fluid metallic hydrogen has been made at high pressures. Solid metallic H would have several scientific and technological applications if metallic fluid hydrogen made at high pressures could be quenched metastably to a solid at ambient
Autor:
W. J. Nellis
Publikováno v:
High Pressure Research. 37:119-136
Static compression is a well-known method to achieve very high pressures in ‘cold’ (degenerate) condensed matter. Because dynamic compression is adiabatic, it achieves both high pressures and temperatures, which are tunable by choice of pressure-
Autor:
W. J. Nellis
Publikováno v:
Journal of physics. Condensed matter : an Institute of Physics journal. 29(50)
The primary purpose of this paper is to stimulate theoretical predictions of how to retain metastably hydrogenous materials made at high pressure P on release to ambient. Ultracondensed metallic hydrogen has been made at high pressures in the fluid a