Phase diagram and superconductivity of polonium hydrides under high pressure
arXiv:1503.08587
Abstract
High pressure structures, phase diagram and superconductivity of polonium hydrides have been systematically investigated through the first-principles calculations based on the density functional theory. With the increasing pressure, several stoichiometries (PoH, , and ) are predicted to stabilize in the excess hydrogen environment. All of the reported hydrides, exception of PoH, exhibit intriguing structural character with the appearing units. Moreover, our electronic band structure and the projected density of states (PDOS) demonstrate that these energetically stable phases are metallic. The application of the Allen-Dynes modified McMillan equation with the calculated electron-phonon coupling parameter reveals that is a superconductor with a critical temperature of 41.2-47.2 K at 300 GPa.
14 pages, 5 figures
References in corpus (6)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Hydrogen sulphide at high pressure: a strongly-anharmonic phonon-mediated superconductor
- Pressure-induced decomposition of solid hydrogen sulfide
- What superconducts in sulfur hydrides under pressure, and why
- Rubidium Polyhydrides Under Pressure: Emergence of the Linear H3- Anion
- Conventional superconductivity at 190 K at high pressures