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Автор M Asif
Автор R L Havill
Автор J M Titman
Дата выпуска 1994-09-26
dc.description Muon spin relaxation in the amorphous alloy Ni<sub>33</sub>Ti<sub>65</sub> containing interstitial hydrogen has been measured in longitudinal geometry at zero applied magnetic field, at temperatures in the range 18-340 K. The relaxation profiles at all temperatures were consistent with time-dependent magnetic fields at the muon site and were analysed by means of a dynamic form of the Kubo-Toyabe relaxation theory. The correlation time of the local field at the muon below 80 K was found to be about 6 mu s and to vary only slowly with temperature. Above approximately 250 K, where the diffusion hopping rate of the hydrogen atoms is about 10<sup>7</sup>-10<sup>8</sup> s<sup>-1</sup>, as measured by nuclear magnetic relaxation methods, the activation energy of the correlation time is similar to the activation energy of the hydrogen diffusion. The relaxation of the muon spin at these temperatures is ascribed to the highly correlated motion of the muon and the hydrogen atoms. Some Monte Carlo calculations of the fluctuation rates of the local fields under such conditions are reported. According to the outcome of these calculations the experimental data are consistent with the muon having an intrinsically lower diffusion rate than the hydrogen atoms.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Muon spin relaxation in hydrogen-loaded amorphous Ni-Ti alloys
Тип paper
DOI 10.1088/0953-8984/6/39/026
Electronic ISSN 1361-648X
Print ISSN 0953-8984
Журнал Journal of Physics: Condensed Matter
Том 6
Первая страница 8077
Последняя страница 8086
Аффилиация M Asif; Dept. of Phys., Sheffield Univ., UK
Аффилиация R L Havill; Dept. of Phys., Sheffield Univ., UK
Аффилиация J M Titman; Dept. of Phys., Sheffield Univ., UK
Выпуск 39

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