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相关论文: Metallic liquid hydrogen and likely Al2O3 metallic…

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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

Sapphire (single-crystal Al2O3) is a representative Earth material and is used as a window and/or anvil in shock experiments. Pressure, for example, at the core-mantle boundary is about 130 gigapascals (GPa). Defects induced by 100-GPa…

材料科学 · 物理学 2015-05-13 W. J. Nellis , G. I. Kanel , S. V. Razorenov , A. S. Savinykh , A. M. Rajendran

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

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 report the results of the X-ray diffraction study of B2O3 glass in the pressure interval up to 10 GPa in the 300-700 K temperature range, the results of in-situ volumetric measurements of the glass at pressures up to 9 GPa at room…

无序系统与神经网络 · 物理学 2008-07-19 V. V. Brazhkin , Y. Katayama , K. Trachenko , O. B. Tsiok , A. G. Lyapin , Emilio Artacho , M. Dove , G. Ferlat , Y. Inamura , H. Saitoh

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

The lack of thermal stability, originating from their metastable nature, has been one of the paramount obstacles that hinder the wide range of applications of metallic glasses. We report that the stability of a metallic glass can be…

Metallic fluid H has been made by dynamic compression decades after Wigner and Huntington (WH) predicted its existence in 1935. The density obtained experimentally is within a few percent of the density predicted by WH. Metallic fluid H was…

材料科学 · 物理学 2015-12-09 W. J. Nellis

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

Hydrogen in its metallic form is the most common material in our solar system, found under the extreme pressure and temperature conditions found in giant planets. Such conditions are inaccessible to experiment and consequently, theoretical…

材料科学 · 物理学 2024-10-29 Jakkapat Seeyangnok , Udomsilp Pinsook , Graeme J Ackland

Ab initio molecular dynamic method within the framework of density functional theory is applied to analyze the structural and electronic properties of crystalline molecular hydrogen at temperature 100\,K. Pressure, pair correlation function…

材料科学 · 物理学 2022-01-12 I. Saitov

Optical properties of compressed fluid hydrogen in the region where dissociation and metallization is observed are computed by ab-initio methods and compared to recent experimental results. We confirm that above 3000 K both processes are…

材料科学 · 物理学 2019-09-04 Giovanni Rillo , Miguel A. Morales , David M. Ceperley , Carlo Pierleoni

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

It was predicted that solid metallic hydrogen can be obtained if solid molecular hydrogen is pressured to high pressure at low temperature about 80 years ago. Furthermore, the solid metallic hydrogen was theoretically predicted to show…

材料科学 · 物理学 2018-11-28 Yasushi Kawashima

Liquid metallic hydrogen (LMH) was recently produced under static compression and high temperatures in bench-top experiments. Here, we report a study of the optical reflectance of LMH in the pressure region of 1.4-1.7 Mbar and use the Drude…

材料科学 · 物理学 2022-06-01 Mohamed Zaghoo , Isaac F. Silvera

High pressures allow the synthesis of new metastable compounds that remain intact for a sufficiently long time at normal conditions. Until now, it has not been fully understood how pressure, glass-forming ability and solidification of…

材料科学 · 物理学 2022-11-08 S. G. Menshikova , N. M. Chtchelkatchev , V. V. Brazhkin

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

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

Loubeyre, Occelli, and Dumas (LOD) [1] claim to have produced metallic hydrogen (MH) at a pressure of 425 GPa, without the necessary supporting evidence of an insulator to metal transition. The paper is much ado about nothing. Most of the…

其他凝聚态物理 · 物理学 2019-07-09 Isaac F. Silvera , Ranga Dias

Due to its low atomic mass hydrogen is the most promising element to search for high-temperature phononic superconductors. However, metallic phases of hydrogen are only expected at extreme pressures (400 GPa or higher). The measurement of a…

超导电性 · 物理学 2016-03-23 José A. Flores-Livas , Antonio Sanna , E. K. U. Gross
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