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A. P. Tankeyev

Publications and source records attributed to A. P. Tankeyev.

3 recordsLinked to original sources

On the nonlinear NMR and magnon BEC in antiferromagnetic materials with coupled electron-nuclear spin precession

We present a new study of nonlinear NMR and Bose-Einstein Condensation (BEC) of nuclear spin waves in antiferromagnetic MnCO3 with coupled electron and nuclear spins. In particular, we show that the observed behaviour of NMR signals strongly contradicts the conventional description of paramagnetic ensembles of noninteracting spins based on the phenomenological Bloch equations. We present a new theoretical description of the coupled electron-nuclear spin precession, which takes into account an indirect relaxation of nuclear spins via the electron subsystem. We show that the magnitude of the nuclear magnetization is conserved for arbitrary large excitation powers, which is drastically different from the conventional heating scenario derived from the Bloch equations. This provides strong evidence that the coherent precession of macroscopic nuclear magnetization observed experimentally can be identified with BEC of nuclear spin waves with k=0.

cond-mat.other

Gray soliton solution in the extended nonlinear Schrodinger equation

In the framework of extended nonlinear Schrodinger equation (ENSE) the classification of self-similar solutions by the relation between the amplitude and phase is performed. New solutions of ENSE - ``gray soliton'' and ``gray soliton chain'' are presented. The properties of these solutions and the possibility for using theirs in physical applications are discussed.

nlin.PS

The relaxation of thermal and high-frequency transverse phonons in the semiconductor cubic crystals

We have considered the relaxation of transverse thermal and high-frequency phonons for the Landau-Rumer mechanism in the semiconductor cubic crystals. Using the known values of these elastic moduli, the parameters determining the transverse phonon relaxation rates for the Landau-Rumer mechanism have been evaluated for the crystals under consideration. It is shown that the dependence of the relaxation rate on the wave vector of thermal and high-frequency phonons strongly differs from the classical Landau-Rumer relationship both in the isotropic medium and in the cubic crystals studied. In contrast to the isotropic medium, for Ge, Si, InSb, and GaSb crystals in the [100] direction, this dependence has an essentially non-monotonic character with two maxima, the second of which is in the range of high-frequency phonons. This anomaly in the [100] direction is most pronounced for InSb and GaSb crystals. The features of the relaxation rate are found to result from the angular dependence of the probability of anharmonic scattering and from the anisotropy of elastic properties.

cond-mat.mtrl-sci