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- W1993136472 abstract "Possible induced electronic and structural phase transitions in solid hydrogen are studied using a unified theoretical approach---the local-density total-energy full-potential linearized-augmented-plane-wave method---which has the precision to treat the highly anisotropic ${mathrm{Pa}}_{3}$ molecular phase on the same footing as the monatomic close-packed phases. The pressure-induced metallization by band overlap and bond length relaxation within the ${mathrm{Pa}}_{3}$ structure of molecular solid hydrogen is described and discussed; the calculations predict an insulator-to-metal phase transition at 1.7ifmmodepmelsetextpmfi{}0.2 Mbar. At a much higher pressure of 4ifmmodepmelsetextpmfi{}1 Mbar, a structural phase transition takes place to a monatomic metallic hcp phase with a high superconducting transition temperature." @default.
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- W1993136472 date "1986-05-01" @default.
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- W1993136472 title "Pressure-induced electronic and structural phase transitions in solid hydrogen" @default.
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- W1993136472 doi "https://doi.org/10.1103/physrevb.33.6383" @default.
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