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Tunable synchronized frequency down-conversion in magnetic lattices with defects

机译:具有缺陷的晶格中的可调同步频率下变频

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摘要

We study frequency conversion in nonlinear mechanical lattices, focusing on a chain of magnets as a model system. We show that, by inserting mass defects at suitable locations, we can introduce localized vibrational modes that nonlinearly couple to extended lattice modes. The nonlinear interaction introduces an energy transfer from the high-frequency localized modes to a low-frequency extended mode. This system is capable of autonomously converting energy between highly tunable input and output frequencies, which need not be related by integer harmonic or subharmonic ratios. It is also capable of obtaining energy from multiple sources at different frequencies with a tunable output phase, due to the defect synchronization provided by the extended mode. Our lattice is a purely mechanical analogue of an opto-mechanical system, where the localized modes play the role of the electromagnetic field and the extended mode plays the role of the mechanical degree of freedom.This article is part of the theme issue ‘Nonlinear energy transfer in dynamical and acoustical systems’.
机译:我们研究非线性机械晶格中的频率转换,重点是作为模型系统的磁铁链。我们表明,通过在合适的位置插入质量缺陷,可以引入非线性耦合到扩展晶格模式的局部振动模式。非线性相互作用导致能量从高频局部模式转移到低频扩展模式。该系统能够在高度可调的输入和输出频率之间自主转换能量,而不必与整数谐波或次谐波比率相关。由于扩展模式提供的缺陷同步,它还能够以可调的输出相位从多个频率的多个源获取能量。我们的晶格是光机械系统的纯机械类似物,其中局部模式起着电磁场的作用,而扩展模式起着机械自由度的作用。本文是主题“非线性能量”的一部分在动力和声学系统中传递”。

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