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Reconfigurable nanoscale spin-wave directional coupler

机译:可重构纳米自旋波定向耦合器

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Spin waves, and their quanta magnons, are prospective data carriers in future signal processing systems because Gilbert damping associated with the spin-wave propagation can be made substantially lower than the Joule heat losses in electronic devices. Although individual spin-wave signal processing devices have been successfully developed, the challenging contemporary problem is the formation of two-dimensional planar integrated spin-wave circuits. Using both micromagnetic modeling and analytical theory, we present an effective solution of this problem based on the dipolar interaction between two laterally adjacent nanoscale spin-wave waveguides. The developed device based on this principle can work as a multifunctional and dynamically reconfigurable signal directional coupler performing the functions of a waveguide crossing element, tunable power splitter, frequency separator, or multiplexer. The proposed design of a spin-wave directional coupler can be used both in digital logic circuits intended for spin-wave computing and in analog microwave signal processing devices.
机译:自旋波及其量子磁振子是未来信号处理系统中的潜在数据载体,因为与自旋波传播相关的吉尔伯特阻尼可以被制作得大大低于电子设备中的焦耳热损耗。尽管已经成功地开发了各个自旋波信号处理设备,但是具有挑战性的当代问题是二维平面集成自旋波电路的形成。使用微磁建模和分析理论,我们基于两个横向相邻的纳米级自旋波波导之间的偶极相互作用,提出了这个问题的有效解决方案。基于此原理开发的设备可以充当多功能且可动态重新配置的信号定向耦合器,执行波导交叉元件,可调功率分配器,频率分离器或多路复用器的功能。所提出的自旋波定向耦合器设计既可用于拟用于自旋波计算的数字逻辑电路,又可用于模拟微波信号处理设备。

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