Enhancement of superconductivity and its relation to lattice expansion in InTe
arXiv:2206.03705 · doi:10.1103/PhysRevB.106.134519
Abstract
The quest to govern the driving forces behind superconductivity and gain control over the superconducting transition temperature is as old as the phenomenon itself. Microscopically, this requires a proper understanding of the evolution of electron-lattice interactions in their parameter space. We report such a controlled study on in InTe via fine-tuning the In stoichiometry . We find that increasing from 0.84 to 1 results in an enhancement of from 1.3 K to 3.5 K accompanied by an increase of the electron-phonon coupling constant from 0.45 to 0.63. Employing first-principles calculations, we show that this behavior is driven by two factors, each taking the dominant role depending on . For , the major role is played by the density of electronic states at the Fermi level. Above , the change in the density of states flattens while the enhancement of continues. We attribute this to a systematic softening of lattice vibrations, amplifying the electron-phonon coupling, and hence, .
7 pages, 5 Figures (main text) + 15 pages, 8 Figures (Supplement)