Prediction of Room-Temperature Superconductivity in Quasi-atomic H2-Type Hydrides at High Pressure

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Jiang, Qiwen, Duan, Defang, Song, Hao, Zhang, Zihan, Huo, Zihao, Jiang, Shuqing, Cui, Tian, Yao, Yansun
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909270995369984
author Jiang, Qiwen
Duan, Defang
Song, Hao
Zhang, Zihan
Huo, Zihao
Jiang, Shuqing
Cui, Tian
Yao, Yansun
author_facet Jiang, Qiwen
Duan, Defang
Song, Hao
Zhang, Zihan
Huo, Zihao
Jiang, Shuqing
Cui, Tian
Yao, Yansun
contents Achieving superconductivity at room temperature (RT) is a holy grail in physics. Recent discoveries on high-Tc superconductivity in binary hydrides H3S and LaH10 at high pressure have directed the search for RT superconductors to compress hydrides with conventional electron-phonon mechanisms. Here, we predict an exceptional family of superhydrides under high pressures, MH12 (M = Mg, Sc, Zr, Hf, Lu), all exhibiting RT superconductivity with calculated Tcs ranging from 313 to 398 K. In contrast to H3S and LaH10, the hydrogen sublattice in MH12 is arranged as quasi-atomic H2 units. This unique configuration is closely associated with high Tc, attributed to the high electronic density of states derived from H2 antibonding states at the Fermi level and the strong electron-phonon coupling related to the bending vibration of H2 and H-M-H. Notably, MgH12 and ScH12 remain dynamically stable even at pressure below 100 GPa. Our findings offer crucial insights into achieving RT superconductivity and pave the way for innovative directions in experimental research.
format Preprint
id arxiv_https___arxiv_org_abs_2302_02621
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Prediction of Room-Temperature Superconductivity in Quasi-atomic H2-Type Hydrides at High Pressure
Jiang, Qiwen
Duan, Defang
Song, Hao
Zhang, Zihan
Huo, Zihao
Jiang, Shuqing
Cui, Tian
Yao, Yansun
Superconductivity
Achieving superconductivity at room temperature (RT) is a holy grail in physics. Recent discoveries on high-Tc superconductivity in binary hydrides H3S and LaH10 at high pressure have directed the search for RT superconductors to compress hydrides with conventional electron-phonon mechanisms. Here, we predict an exceptional family of superhydrides under high pressures, MH12 (M = Mg, Sc, Zr, Hf, Lu), all exhibiting RT superconductivity with calculated Tcs ranging from 313 to 398 K. In contrast to H3S and LaH10, the hydrogen sublattice in MH12 is arranged as quasi-atomic H2 units. This unique configuration is closely associated with high Tc, attributed to the high electronic density of states derived from H2 antibonding states at the Fermi level and the strong electron-phonon coupling related to the bending vibration of H2 and H-M-H. Notably, MgH12 and ScH12 remain dynamically stable even at pressure below 100 GPa. Our findings offer crucial insights into achieving RT superconductivity and pave the way for innovative directions in experimental research.
title Prediction of Room-Temperature Superconductivity in Quasi-atomic H2-Type Hydrides at High Pressure
topic Superconductivity
url https://arxiv.org/abs/2302.02621