Quaternary borocarbides: a testbed for DFT for superconductors
arXiv:2310.03723 · doi:10.1103/PhysRevB.109.L180505
Abstract
Using ab-initio density functional theory for superconductors (SCDFT), we systematically study the quaternary borocarbides BC. Treating the retarded (frequency-dependent) interaction within the random-phase approximation (RPA), we find good agreement with experiments for the calculated superconducting critical temperature in the nonmagnetic Ni- and Pd-based compounds. We argue that the problem of accurately placing the -bands within DFT, and possibly the lack of an explicit magnetic pair-breaking mechanism, explain the difficulties of SCDFT in reproducing in members of the magnetic NiBC series ( rare-earth with partially filled ). While the calculated is overestimated, SCDFT qualitatively captures the experimentally observed trend along the rare-earth series, which indicates that the electron-phonon couplings and dynamically screened interactions have a significant effect on .
References in corpus (8)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Efficient implementation of the GW approximation within the all-electron FLAPW method
- Correlated electronic structure of LaNiO under pressure
- Superconducting pairing mediated by spin-fluctuations from first principles
- Anisotropic superconducting gaps in YNiBC: A first-principles investigation
- Phonons and electron-phonon coupling in the phonon-mediated superconductor YNi2B2C
- +EDMFT investigation of PrSrNiO under pressure