Superconductivity in La and Y hydrides: Remaining questions to experiment and theory
Recent reports of the superconductivity in hydrides of two different families (covalent lattice, as in SH3 and clathrate-type H-cages containing La and Y atoms, as in LaH10 and YH6) have revealed new families of high-Tc materials with Tc’s near room temperature values...
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doaj-a689e2a6c6d048cd8306a7aaa07659a32020-11-25T03:00:01ZengAIP Publishing LLCMatter and Radiation at Extremes2468-080X2020-03-0152028201028201-1110.1063/1.5128736Superconductivity in La and Y hydrides: Remaining questions to experiment and theoryViktor Struzhkin0Bing Li1Cheng Ji2Xiao-Jia Chen3Vitali Prakapenka4Eran Greenberg5Ivan Troyan6Alexander Gavriliuk7Ho-kwang Mao8Center for High Pressure Science and Technology Advanced Research, Shanghai, ChinaCenter for High Pressure Science and Technology Advanced Research, Shanghai, ChinaCenter for High Pressure Science and Technology Advanced Research, Shanghai, ChinaCenter for High Pressure Science and Technology Advanced Research, Shanghai, ChinaCenter for Advanced Radiation Sources, The University of Chicago, 5640 South Ellis Avenue, Chicago, Illinois 60637, USACenter for Advanced Radiation Sources, The University of Chicago, 5640 South Ellis Avenue, Chicago, Illinois 60637, USAFederal Scientific Research Center Crystallography and Photonics, Russian Academy of Sciences, 59 Leninskii Pr-t, Moscow 119333, RussiaFederal Scientific Research Center Crystallography and Photonics, Russian Academy of Sciences, 59 Leninskii Pr-t, Moscow 119333, RussiaCenter for High Pressure Science and Technology Advanced Research, Shanghai, ChinaRecent reports of the superconductivity in hydrides of two different families (covalent lattice, as in SH3 and clathrate-type H-cages containing La and Y atoms, as in LaH10 and YH6) have revealed new families of high-Tc materials with Tc’s near room temperature values. These findings confirm earlier expectations that hydrides may have very high Tc’s due to the fact that light H atoms have very high vibrational frequencies, leading to high Tc values within the conventional Bardeen–Cooper–Schrieffer phonon mechanism of superconductivity. However, as is pointed out by Ashcroft, it is important to have the metallic hydrogen “alloyed” with the elements added to it. This concept of a metallic alloy containing a high concentration of metal-like hydrogen atoms has been instrumental in finding new high-Tc superhydrides. These new superhydride “room-temperature” superconductors are stabilized only at very high pressures above 100 GPa, making the experimental search for their superconducting properties very difficult. We will review the current experimental and theoretical results for LaH10−x and YH6−x superhydrides.http://dx.doi.org/10.1063/1.5128736 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Viktor Struzhkin Bing Li Cheng Ji Xiao-Jia Chen Vitali Prakapenka Eran Greenberg Ivan Troyan Alexander Gavriliuk Ho-kwang Mao |
spellingShingle |
Viktor Struzhkin Bing Li Cheng Ji Xiao-Jia Chen Vitali Prakapenka Eran Greenberg Ivan Troyan Alexander Gavriliuk Ho-kwang Mao Superconductivity in La and Y hydrides: Remaining questions to experiment and theory Matter and Radiation at Extremes |
author_facet |
Viktor Struzhkin Bing Li Cheng Ji Xiao-Jia Chen Vitali Prakapenka Eran Greenberg Ivan Troyan Alexander Gavriliuk Ho-kwang Mao |
author_sort |
Viktor Struzhkin |
title |
Superconductivity in La and Y hydrides: Remaining questions to experiment and
theory |
title_short |
Superconductivity in La and Y hydrides: Remaining questions to experiment and
theory |
title_full |
Superconductivity in La and Y hydrides: Remaining questions to experiment and
theory |
title_fullStr |
Superconductivity in La and Y hydrides: Remaining questions to experiment and
theory |
title_full_unstemmed |
Superconductivity in La and Y hydrides: Remaining questions to experiment and
theory |
title_sort |
superconductivity in la and y hydrides: remaining questions to experiment and
theory |
publisher |
AIP Publishing LLC |
series |
Matter and Radiation at Extremes |
issn |
2468-080X |
publishDate |
2020-03-01 |
description |
Recent reports of the superconductivity in hydrides of two different families (covalent
lattice, as in SH3 and clathrate-type H-cages containing La and Y atoms, as in
LaH10 and YH6) have revealed new families of high-Tc
materials with Tc’s near room temperature values. These findings confirm
earlier expectations that hydrides may have very high Tc’s due to the fact that
light H atoms have very high vibrational frequencies, leading to high Tc values
within the conventional Bardeen–Cooper–Schrieffer phonon mechanism of superconductivity.
However, as is pointed out by Ashcroft, it is important to have the metallic hydrogen
“alloyed” with the elements added to it. This concept of a metallic alloy containing a
high concentration of metal-like hydrogen atoms has been instrumental in finding new
high-Tc superhydrides. These new superhydride “room-temperature”
superconductors are stabilized only at very high pressures above 100 GPa, making the
experimental search for their superconducting properties very difficult. We will review
the current experimental and theoretical results for LaH10−x and
YH6−x superhydrides. |
url |
http://dx.doi.org/10.1063/1.5128736 |
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