High Tc superconductivity in heavy Rare Earth Hydrides: correlation between the presence of the f states on the Fermi surface, nesting and the value of Tc
arXiv:2010.12225 · doi:10.1088/0256-307X/38/10/107401
Abstract
Lanthanum hydrides, containing hydrogen framework structures under compression, display a superconducting state with a high observed critical temperature. However, this phenomenon has so far only been observed at very high pressures. Here, we computationally search for superconductors with very high critical temperatures, but at much lower pressures. We uncover two such sodalite-type clathrate hydrides, YbH6 and LuH6 (Tc =145 K at P=70 GPa for YbH6 and, especially, Tc =273 K at P=100 GPa for LuH6). These striking properties are a consequence of the strong interrelationship between the f states present at the Fermi surface, structural stability and Tc value. For example, TmH6, with unfilled 4f orbitals, is stable at 50 GPa, while it has a relatively low value of Tc of 25 K. As for the YbH6 and LuH6 compounds, they have filled f-shells and the decrease of the f-energy below the Fermi level leads to formation of the nesting regions on the Fermi surface and, as a result, to phonon "softening" and an increase in Tc.
14 pages ,4 figures
References in corpus (7)
- Superconductive "sodalite"-like clathrate calcium hydride at high pressures
- High-pressure phases of silane
- Observation of the Wigner-Huntington Transition to Solid Metallic Hydrogen
- Pressure-induced decomposition of solid hydrogen sulfide
- Superconducting hydrides under pressure
- Novel Strongly Correlated Europium Superhydrides
- High-Tc state of Lanthanum hydrides
Cited by in corpus (17)
- Design Principles for High Temperature Superconductors with Hydrogen-based Alloy Backbone at Moderate Pressure
- Efficient route to achieve superconductivity improvement via substitutional La-Ce alloy superhydride at high pressure
- Search for ambient superconductivity in the Lu-N-H system
- Pressure-induced color change in the lutetium dihydride LuH2
- First-principles study on the superconductivity of N-doped fcc-LuH3
- Structure, Stability and Superconductivity of N-doped Lutetium Hydrides at kbar Pressures
- Full-bandwidth anisotropic Migdal-Eliashberg theory and its application to superhydrides
- Temperature and quantum anharmonic lattice effects on stability and superconductivity in lutetium trihydride
- On parent structures of near-ambient nitrogen-doped lutetium hydride superconductor
- Leading components and pressure-induced color changes in N-doped lutetium hydride
- Large negative magnetoresistance and pseudogap phase in superconducting A15-type LaH
- Assessing the feasibility of near-ambient conditions superconductivity in the Lu-N-H system
- Electronic and magnetic properties of Lu and LuH
- Effect of Doping on the phase stability and Superconductivity in LaH10
- Transformation of hexagonal Lu to cubic LuH single-crystalline films
- Predicted high-temperature superconductivity in rare earth hydride ErH2 at moderate pressure
- Superconductive Sodalite-like Clathrate Hydrides MXH with Critical Temperatures of near 300 K under Pressures