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Spin wave waveguides formed by domain walls in arrays of dipolarly coupled magnetic nanodots

机译:由偶极耦合磁性纳米点阵列中的畴壁形成的自旋波波导

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Here we propose to use internal domain walls in dot arrays as reconfigurable waveguides acting as passive conduits interconnecting active magnonic elements, e.g. spin-toque nano-oscillators (STNO) generating propagating spin waves. These “building blocks” can be used to design reconfigurable magnonic circuits that include active and passive magnonic elements, generators, mixers, splitters, etc. Unlike conventional spin-wave waveguides [3], the domain walls can be dynamically created and moved across a dot array, opening interesting possibilities of magnonic circuit reconfiguration in real time: interconnecting different elements and rerouting signals by reversing the polarization of selected dots without changing the mechanical configuration of the circuit.
机译:在这里,我们建议使用点阵中的内部畴壁作为可重配置的波导,用作互连有源磁电元件的无源导管。自旋转矩纳米振荡器(STNO)产生传播的自旋波。这些“构建块”可用于设计可重构的磁电电路,包括有源和无源磁电元件,发生器,混频器,分流器等。与传统的自旋波波导[3]不同,可以动态创建畴壁并在其上移动点阵列,为大型电子电路的实时重新配置提供了有趣的可能性:互连不同的元件并通过反转选定点的极化来重新路由信号,而无需更改电路的机械配置。

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