Experimental TDPAC and Theoretical DFT Study of Structural, Electronic, and Hyperfine Properties in ($^{111}$In-->) $^{111}$Cd-Doped SnO$_2$ Semiconductor: Ab Initio Modeling of the Electron-Capture-Decay After-Effects Phenomenon

) $^{111}$Cd-Doped SnO$_2$ Semiconductor: Ab Initio Modeling of the Electron-Capture-Decay After-Effects Phenomenon -->
Autoři: Darriba, Germán N., Muñoz, Emiliano L., Carbonari, Artur W., Rentería, Mario
Zdroj: J. Phys. Chem. C 122, 17423 (2018)
Rok vydání: 2018
Místo uložení: Condensed Matter
Témata: Condensed Matter - Materials Science
Popis: In this paper we investigate the effect of Cd doping at ultra-low concentrations in SnO$_2$ both experimentally, by measuring the temperature dependence of the electric quadrupole hyperfine interactions with time-differential perturbed angular correlation (TDPAC) spectroscopy using $^{111}$Cd as probe nuclei, and theoretically, by performing first-principles calculations based on the density functional theory. TDPAC spectra were successfully analyzed with a time-dependent on-off model for the perturbation factor. These results show combined dynamic plus static interactions whose electric-field gradients were associated in this model to different stable electronic configurations close to the Cd atoms. The dynamic regime is then originated in fast fluctuations between these different electronic configurations. First-principles calculations results show that the Cd impurity introduces a double acceptor level in the top of the valence band of the doped semiconductor and produces isotropic outward relaxations of the nearest oxygen neighbors. The variation of the calculated electric-field gradient tensor as a function of the charge state of the Cd impurity level shows an interesting behavior that explains the experimental results, giving strong support from first-principles to the electron-capture after-effects proposed scenario. The electron-capture decay of the parent $^{111}$In to $^{111}$Cd as well as the double acceptor character of the $^{111}$Cd impurity and the electric nature of the host are shown to contribute to the existence of these type of time-dependent hyperfine interactions.
Comment: 35 pages, 2 Tables and 9 Figures
Druh dokumentu: Working Paper
DOI: 10.1021/acs.jpcc.8b03724
Přístupová URL adresa: http://arxiv.org/abs/1804.02786
Přírůstkové číslo: edsarx.1804.02786
Autor: Darriba, Germán N., Muñoz, Emiliano L., Carbonari, Artur W., Rentería, Mario
Rok vydání: 2018
Předmět:
Zdroj: J. Phys. Chem. C 122, 17423 (2018)
Druh dokumentu: Working Paper
DOI: 10.1021/acs.jpcc.8b03724
Popis: In this paper we investigate the effect of Cd doping at ultra-low concentrations in SnO$_2$ both experimentally, by measuring the temperature dependence of the electric quadrupole hyperfine interactions with time-differential perturbed angular correlation (TDPAC) spectroscopy using $^{111}$Cd as probe nuclei, and theoretically, by performing first-principles calculations based on the density functional theory. TDPAC spectra were successfully analyzed with a time-dependent on-off model for the perturbation factor. These results show combined dynamic plus static interactions whose electric-field gradients were associated in this model to different stable electronic configurations close to the Cd atoms. The dynamic regime is then originated in fast fluctuations between these different electronic configurations. First-principles calculations results show that the Cd impurity introduces a double acceptor level in the top of the valence band of the doped semiconductor and produces isotropic outward relaxations of the nearest oxygen neighbors. The variation of the calculated electric-field gradient tensor as a function of the charge state of the Cd impurity level shows an interesting behavior that explains the experimental results, giving strong support from first-principles to the electron-capture after-effects proposed scenario. The electron-capture decay of the parent $^{111}$In to $^{111}$Cd as well as the double acceptor character of the $^{111}$Cd impurity and the electric nature of the host are shown to contribute to the existence of these type of time-dependent hyperfine interactions.
Comment: 35 pages, 2 Tables and 9 Figures
Databáze: arXiv