Lifshitz Transitions in 122-Pnictides Under Pressure
arXiv:1401.7349 · doi:10.1103/PhysRevB.90.144512
Abstract
We demonstrate, using first principles total energy calculations, that observed pressure-driven anomalies in the entire 122-pnictides family (FeAs; = alkali earth element Ca, Sr, Ba) can be understood as consequences of Lifshitz transitions (LTs) \cite{Lifshitz60}. Our results for energy band dispersions and spectra, lattice parameters, enthalpies, magnetism, and elastic constants over a wide range of hydrostatic pressure provide a coherent understanding of multiple transitions in these compounds, namely, enthalpic, magnetic and tetragonal (T) - collapsed tetragonal (cT) transitions. In particular, the T-cT transition and anomalies in lattice parameters and elastic properties, observed at finite temperatures, are interpreted as arising from proximity to Lifshitz transitions, wherein pressure causes non-trivial changes in the Fermi surface topology in these materials.