The diffusive motion of silver ions in α-AgI: Results from quasielastic neutron scattering |
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Authors: | G. Eckold K. Funke J. Kalus R.E. Lechner |
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Affiliation: | Institut für Physikalische Chemie, Universität Göttingen and Sonderforschungsbereich 126, DeutschlandFrance;Physik-Department, Technische Universität München, DeutschlandFrance;Institut Laue-Langevin, 156X Centre de Tri, 38042 Grenoble Cedex, France |
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Abstract: | ![]() The diffusive motion of silver ions in σ-AgI at 250°C has been studied by quasielastic cold neutron scattering. Spectra were taken in the range of wavevector transfer 0.5 < Q < 2.2Å?1 for elastic scattering. The quasielastic line shapes contain a narrow and a broad component. They are compared to model calculations allowing for the superposition of two kinds of motion on two different time scales, a local random motion and a translational motion of the jump-diffusion type. The model closely fits the data. The local random motion takes place on a time scale of the order of 10?12 s, with amplitudes of the order of 1 Å. It is probably caused by rapid fluctuations of the local potentials due to the diffusive motion of the other cations. The translational motion results in a mean displacement of the silver ion over a distance of the order of a lattice constant (5 Å) with a correlation time of the order of 10?11s. This correlation time is composed of a residence time and a time-of-flight, which are both of comparable magnitude. |
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