paper

Microscopic Origin of Structural Disorder in -NbN: Correlation of Superconductivity and Electronic Structure

arXiv:2010.04509

Abstract

Rock-salt type niobium nitride (-NbN) is a well-known superconductor having superconducting transition temperature (Tc) 18\,K and a large superconducting gap 3\,meV. The Tc of -NbN thin film exhibits a large scattering irrespective of the growth conditions and lattice parameter. In this work, we investigate the atomic origin of suppression of Tc in -NbN thin film by employing combined methods of experiments and ab-initio simulations. Sputtered -NbN thin films with different disorder were analyzed through electrical resistivity and x-ray absorption spectroscopy. A strong correlation between the superconductivity and the atomic distortion induced electronic reconstruction was observed. The theoretical analysis revealed that under N-rich growth conditions, atomic and molecular N-interstitial defects assisted by cation vacancies form spontaneously and are responsible for the suppression of Tc in -NbN by smearing its electronic densities of states around Fermi level.

5 Pages, 4 figures