当前位置: X-MOL 学术Annu. Rev. Condens. Matter Phys. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Superconducting Hydrides Under Pressure
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031218-013413
Chris J. Pickard 1, 2 , Ion Errea 3, 4, 5 , Mikhail I. Eremets 6
Affiliation  

The measurement of superconductivity at above 200 K in compressed samples of hydrogen sulfide and in lanthanum hydride at 250 K is reinvigorating the search for conventional high temperature superconductors. At the same time, it exposes a fascinating interplay between theory, computation, and experiment. Conventional superconductivity is well understood, and theoretical tools are available for accurate predictions of the superconducting critical temperature. These predictions depend on knowing the microscopic structure of the material under consideration, which can now be provided by computational first-principles structure predictions. The experiments at the megabar pressures required are extremely challenging, but, for some groups at least, permit the experimental exploration of materials space. We discuss the prospects for the search for new superconductors, ideally at lower pressures.

中文翻译:


压力下的超导氢化物

在硫化氢压缩样品和氢化镧在250 K样品中200 K以上的超导性测量正在为传统的高温超导体寻找新的动力。同时,它揭示了理论,计算和实验之间令人着迷的相互作用。常规的超导性已广为人知,并且理论工具可用于精确预测超导临界温度。这些预测取决于了解所考虑材料的微观结构,现在可以通过计算第一原理结构预测来提供这些预测。在所需的兆帕压力下进行的实验极具挑战性,但至少对于某些小组而言,允许对材料空间进行实验性探索。

更新日期:2020-04-21
down
wechat
bug