One of the main problems of magnonics is finding the ways of efficiently spin waves excitation in a magnet. This paper considers the method of nonlinear amplification by phase locking of amplitude of dynamic magnetization in yttrium-iron garnet film performed by micromagnetic modeling with MuMAX3 software taking into account the real materials parameters. It is shown that the excited magnetization precession can be considered as a autoresonance phenomena. The intensity of the autoresonance in ferrimagnetic yttrium-iron garnet films has threshold dependence on the chirp rate of the exciting magnetic field.
Статья поступила в редакцию 11 декабря 2018 г. Аннотация. Методом Мандельштам-Бриллюэновского рассеяния света изучена полевая зависимость ферромагнитного резонанса и спин-волнового резонанса для пленки пермаллоя толщиной 40 нм. Показано, что совпадение частот спинволнового резонанса для рассчитанных и экспериментальных данных происходит при учете константы поверхностной анизотропии. Интенсивность рассеянного света объясняется взаимодействием электромагнитной волны со спиновыми волнами в глубине скин-слоя пермаллоя. Получены дисперсионные характеристики поверхностных и псевдо-поверхностных спиновых волн. Ключевые слова: Мандельштам-Бриллюэновское рассеяние света, магнитостатические спиновые волны, спин-волновой резонанс, пермаллой.
One of the main tasks of both magnonics and physics of nonlinear processes on the search for ways of exciting efficiently magnetic oscillations in solids is discussed. According to the earlier developed theoretical predictions, the MuMax3 software is used to carry out a micromagnetic simulation of a nonlinear effect of strong autoresonance amplifying of the amplitude of magnetic oscillations in yttrium-iron garnet under the action of an external excitation field. It is shown that the efficiency of this autoresonance excitation in thin films of ferrimagnetic yttrium-iron garnet nonlinearly depends on the power of the exciting field and the rate of change (scanning) of the exciting frequency. Both the rate of change and power of the exciting frequency are estimated with the aim of direct experimental observation of the autoresonance effect, in view of the real parameters of the yttrium-iron garnet film at room temperature.
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