Abstract
We report experimental studies and suggest a quantitative model of spin relaxation in Mn12 acetate in a pulsed magnetic field in the temperature range 1.9-5.0 K. When the field applied along the anisotropy axis is swept at 140 T/s through a nonmagnetized Mn12 acetate sample, the sample’s magnetization switches, within a few milliseconds, from zero to saturation at a well-defined field whose value depends on temperature but is quantized in units of 0.46 T. A quantitative explanation of the effect is given in terms of a spin-phonon avalanche combined with thermally assisted resonant spin tunneling. © 1999 The American Physical Society.
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CITATION STYLE
Del Barco, E., Hernandez, J. M., Sales, M., Tejada, J., Rakoto, H., Broto, J. M., & Chudnovsky, E. M. (1999). Spin-phonon avalanches in Mn12 acetate. Physical Review B - Condensed Matter and Materials Physics, 60(17), 11898–11901. https://doi.org/10.1103/PhysRevB.60.11898
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