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According to the theoretical predictions, insulating molecular hydrogen dissociates and transforms to an atomic metal at pressures P~370-500 GPa. In another scenario, the metallization first occurs in the 250-500 GPa pressure range in…

材料科学 · 物理学 2019-06-18 M. I. Eremets , A. P. Drozdov , P. P. Kong , H. Wang

As the simplest element in nature, unraveling the phase diagram of hydrogen is a primary task for condensed matter physics. As conjectured many decades ago, in the low-temperature and high-pressure part of the phase diagram, solid hydrogen…

超导电性 · 物理学 2023-11-14 Mehmet Dogan , Sehoon Oh , Marvin L. Cohen

The first-principle method of mathematical modeling was used to calculate the structural, electronic, phonon, and other characteristics of the normal metallic phase of hydrogen at a pressure of 500 GPa. It has been shown that metal hydrogen…

超导电性 · 物理学 2016-07-06 Nikolay Degtyarenko , Evgeny Mazur

Recent experimental developments in hydrogen-rich materials in high pressures have put this class of materials above others in the race toward room temperature superconductivity. As it is the basis of all the materials in this class, the…

超导电性 · 物理学 2022-02-03 Mehmet Dogan , Sehoon Oh , Marvin L. Cohen

The molecular phase of hydrogen converts to the atomic metallic phase at high pressures estimated usually as 300 - 500 GPa. We analyze the decay of metallic phase as the pressure is relieved below the transition one. The metallic state is…

其他凝聚态物理 · 物理学 2018-01-03 S. N. Burmistrov , L. B. Dubovskii

The thermodynamic properties of the superconducting state induced in metallic molecular hydrogen under the influence of pressure 347 GPa were determined. In particular, it has been shown that the critical temperature ($T_{C}$) changes in…

超导电性 · 物理学 2012-04-24 R. Szczęśniak , M. W. Jarosik

The electrical resistivity of liquid hydrogen has been measured at the high dynamic pressures, densities and temperatures that can be achieved with a reverberating shock wave. The resulting data are most naturally interpreted in terms of a…

材料科学 · 物理学 2009-10-30 W. J. Nellis , A. A. Louis , N. W. Ashcroft

It is generally assumed that solid hydrogen will transform into a metallic alkali-like crystal at sufficiently high pressure. However, some theoretical models have also suggested that compressed hydrogen may form an unusual two-component…

材料科学 · 物理学 2009-11-10 Stanimir A. Bonev , Eric Schwegler , Tadashi Ogitsu , Giulia Galli

Molecular hydrogen was pressurized in a diamond anvil cell at temperatures between 5 and 83 K. At a sufficiently high pressure, estimated to be between 477 to 491 GPa, hydrogen became metallic, determined by its reflectance in the near…

材料科学 · 物理学 2022-09-27 W. Ferreira , M. Moller , K. Linsuain , J. Song , A. Salamat , R. Dias , I. F. Silvera

Superconductivity in the recently proposed ground-state structures of atomic metallic hydrogen is investigated over the pressure range 500 GPa to 3.5 TPa. Near molecular dissociation, the electron--phonon coupling $\lambda$ and renormalized…

超导电性 · 物理学 2015-05-28 Jeffrey M. McMahon , David M. Ceperley

Atomic metallic hydrogen with a lattice with FDDD symmetry is shown to have a stable phase under hydrostatic compression in the range of pressure 350 - 500 GPa.

超导电性 · 物理学 2017-08-23 Nikolay Degtyarenko , Evgeny Mazur , Constantin Grishakov

Hydrogen has been the essential element in the development of atomic and molecular physics1). Moving to the properties of dense hydrogen has appeared a good deal more complex than originally thought by Wigner and Hungtinton in their seminal…

材料科学 · 物理学 2019-06-14 Paul Loubeyre , Florent Occelli , Paul Dumas

Metallic hydrogen is expected to exhibit remarkable physics. Of particular interest in this work is the possibility of high-temperature superconductivity. Comparing calculations of the superconducting critical temperatures of the solid…

超导电性 · 物理学 2021-07-02 Craig M. Tenney , Zachary F. Croft , Jeffrey M. McMahon

We present an accurate study of the static-nucleus electronic energy band gap of solid molecular hydrogen at high pressure. The excitonic and quasiparticle gaps of the $C2/c$, $Pc$, $Pbcn$, and $P6_3/m$ structures at pressures of 250, 300,…

材料科学 · 物理学 2017-01-25 Sam Azadi , N. D. Drummond , W. M. C. Foulkes

Ab initio random structure searching with density functional theory was used to determine the zero-temperature structures of atomic metallic hydrogen from 500 GPa to 5 TPa. Including zero point motion in the harmonic approximation, we…

材料科学 · 物理学 2015-05-20 Jeffrey M. McMahon , David M. Ceperley

By employing first-principles metadynamics simulations, we explore the 300 K structures of solid hydrogen over the pressure range 150-300 GPa. At 200 GPa, we find the ambient-pressure disordered hexagonal close-packed (hcp) phase transited…

材料科学 · 物理学 2012-08-16 Hanyu Liu , Li Zhu , Wenwen Cui , Yanming Ma

Liquid-liquid phase transition of hydrogen is at the center of hydrogen phase diagram as a promising route towards emergent properties such as the Wigner-Huntington metallization, superconductivity, and superfluidity. Here we report a study…

材料科学 · 物理学 2022-06-27 Jianqing Guo , Bingqing Cheng , Limei Xu , Enge Wang , Ji Chen

Structural behavior and equation of state of atomic and molecular crystal phases of dense hydrogen at pressures up to 3.5 TPa are systematically investigated with density functional theory. The results indicate that the Vinet EOS model that…

其他凝聚态物理 · 物理学 2012-03-27 Hua Y. Geng , Hong X. Song , J. F. Li , Q. Wu

We study the structural and electronic properties of phase III of solid hydrogen using accurate many-electron theories and compare to state-of-the-art experimental findings. The atomic structures of phase III modelled by C2/c-24 crystals…

材料科学 · 物理学 2021-02-24 Ke Liao , Tong Shen , Xin-Zheng Li , Ali Alavi , Andreas Grüneis

The interplay between electron correlation and nuclear quantum effects makes our understanding of elemental hydrogen a formidable challenge. Here, we present the phase diagram of hydrogen and deuterium at low temperatures and high-pressure…

材料科学 · 物理学 2023-06-28 Lorenzo Monacelli , Michele Casula , Kosuke Nakano , Sandro Sorella , Francesco Mauri
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