arXiv:1905.04805·v2·cond-mat.mtrl-sci
Spectral and optical properties of AgAu(Se,Te) and dark matter detection
Miguel-Ángel Sánchez-Martínez🇫🇷 · Iñigo Robredo🇪🇸 · Arkaitz Bidauzarraga🇪🇸 · Aitor Bergara🇪🇸 · Fernando de Juan🇪🇸 · Adolfo G. Grushin🇫🇷 · Maia G. Vergniory🇪🇸
Abstract
In this work we study the electronic structure of AgAuSe and AgAuTe, two chiral insulators whose gap can be tuned through small changes in the lattice parameter by applying hydrostatic pressure or choosing different growth protocols. Based on first principles calculations we compute their band structure for different values of the lattice parameters and show that while AgAuSe retains its direct narrow gap at the point, AgAuTe can turn into a metal. Focusing on AgAuSe we derive a low energy model around using group theory, which we use to calculate the optical conductivity for different values of the lattice constant. We discuss our results in the context of detection of light dark matter particles, which have masses of the order of a eV, and conclude that AgAuSe satisfies three important requirements for a suitable detector: small Fermi velocities, eV band gap and low photon screening. Our work motivates the growth of high-quality and large samples of AgAuSe to be used as target materials in dark matter detectors.
Comments: 13 pages, 4 figures, fixed typos, submitted version