Mechanism of the transition of solid hydrogen to the conducting state at high pressures

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Abstract

The density functional theory is applied for the calculation of the dependence of pressure and profiles of proton-proton pair correlation function of hydrogen on density in the range 1.14-2.0 g/cm3 at temperature 100 K. The calculated range of pressures is 300-2600 GPa, which corresponds to the solid phase of hydrogen. The transition at pressure 607 GPa is found, which is characterized by a noticeable jump of electrical conductivity and a sharp decrease in the number of molecules of H2. The structural transition is characterized by the first peak of the pair correlation function at a distance of 0.92 Å, which corresponds to the interatomic distance in the ion and does not depend on density. Therefore, the nature of the transition combines ionization with structural changes.

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Norman, G. E., & Saitov, I. M. (2019). Mechanism of the transition of solid hydrogen to the conducting state at high pressures. In Journal of Physics: Conference Series (Vol. 1147). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/1147/1/012002

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