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The role of Snell’s law for a magnonic majority gate

机译:斯涅尔定律在强力多数选通中的作用

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摘要

In the fifty years since the postulation of Moore’s Law, the increasing energy consumption in silicon electronics has motivated research into emerging devices. An attractive research direction is processing information via the phase of spin waves within magnonic-logic circuits, which function without charge transport and the accompanying heat generation. The functional completeness of magnonic logic circuits based on the majority function was recently proved. However, the performance of such logic circuits was rather poor due to the difficulty of controlling spin waves in the input junction of the waveguides. Here, we show how Snell’s law describes the propagation of spin waves in the junction of a Ψ-shaped magnonic majority gate composed of yttrium iron garnet with a partially metallized surface. Based on the analysis, we propose a magnonic counterpart of a core-cladding waveguide to control the wave propagation in the junction. This study has therefore experimentally demonstrated a fundamental building block of a magnonic logic circuit.
机译:自从摩尔定律颁布以来的五十年里,硅电子产品中越来越多的能源消耗推动了对新兴设备的研究。一个有吸引力的研究方向是通过在磁电逻辑电路内的自旋波的相位来处理信息,该功能在没有电荷传输和伴随的热量产生的情况下起作用。最近,证明了基于多数功能的大型逻辑电路的功能完整性。然而,由于难以控制波导的输入结中的自旋波,因此这种逻辑电路的性能相当差。在这里,我们展示了斯涅尔定律如何描述自旋波在由钇铁石榴石和部分金属化表面组成的Ψ形大型镁质门的交界处的传播。在分析的基础上,我们提出了芯-包层波导的强磁组件,以控制结中的波传播。因此,这项研究从实验上证明了强磁逻辑电路的基本组成部分。

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