Dual control of high-frequency chaotic excitations in active ring oscillators based on artificial multiferroics

A. Ustinov, A. Kondrashov, B. Kalinikos, A. Nikitin, O. Pakhomov
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Abstract

Properties of the high-frequency spin-electromagnetic wave chaos developed in active ring oscillators have been investigated. A multiferroic structure composed of yttrium iron garnet film and barium strontium titanate (BST) slab served as a nonlinear dispersive medium of the oscillator. Dual control of the fractal dimension of the chaotic signal attractor was realized by variation of the ring gain and dielectric permittivity of the BST slab.
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基于人工多铁性的有源环振高频混沌激励的双重控制
研究了有源环形振荡器中高频自旋电磁波混沌的性质。由钇铁石榴石薄膜和钛酸锶钡(BST)板组成的多铁结构作为振荡器的非线性色散介质。通过改变BST板的环增益和介电常数,实现了混沌信号吸引子分形维数的双重控制。
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