Abstract
An analytical expression for the amplitude of a single-pulse nuclear echo signal generated in magnetically ordered materials is obtained taking into account the inhomogeneous broadening of the spectroscopic transition and the inhomogeneous distribution of the gain with an average value of greater than unity. It is shown that, in this signal, summation of the oscillations of nuclear magnetic moments with equal amplitudes and phases occurs at each instant of time. The cause of the effective suppression of the nuclear magnetic moment oscillations in the initial portion of the free precession signal is revealed analytically. The dependence of the amplitude of the one-pulse echo signal on the strength of an external alternating magnetic field, the pulse duration, and the width of the gain distribution is determined. The results obtained are compared with the experimental data for a Co2MnSi ferromagnetic polycrystalline sample.
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Translated from Fizika Tverdogo Tela, Vol. 47, No. 11, 2005, pp. 1994–1997.
Original Russian Text Copyright © 2005 by Kuz’min, Kolesenko.
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Kuz’min, V.S., Kolesenko, V.M. Single-pulse nuclear echo signals in magnetically ordered media. Phys. Solid State 47, 2077–2081 (2005). https://doi.org/10.1134/1.2131148
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DOI: https://doi.org/10.1134/1.2131148