Record-high-Tc elemental superconductivity in scandium
arXiv:2302.14378 · doi:10.1103/PhysRevLett.130.256002
Abstract
Elemental materials provide clean and fundamental platforms for studying superconductivity. However, the highest superconducting critical temperature (Tc) yet observed in elements has not exceeded 30 K. Discovering elemental superconductors with a higher Tc is one of the most fundamental and challenging tasks in condensed matter physics. In this study, by applying high pressure up to approximately 260 GPa, we demonstrate that the superconducting transition temperature of elemental scandium (Sc) can be increased to 36 K, which is a record-high Tc for superconducting elements. The pressure dependence of Tc implies the occurrence of multiple phase transitions in Sc, which is in agreement with previous X-ray diffraction results. Optimization of Tc is achieved in the Sc-V phase, which can be attributed to the strong coupling between d electrons and moderate-frequency phonons, as suggested by our first-principles calculations. This study provides insights for exploring new high-Tc elemental metals.
12 pages, 5 figures
References in corpus (6)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Observation of the Wigner-Huntington Transition to Solid Metallic Hydrogen
- Record High Tc Element Superconductivity Achieved In Titanium
- The electron-phonon coupling constant and the Debye temperature in polyhydrides of thorium, hexadeuteride of yttrium, and metallic hydrogen phase III
- Record high and robust superconductivity in transition metal -Ti phase at megabar pressure
- Recent Studies in Superconductivity at Extreme Pressures
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