论文标题

反设计宏伟的宏伟设备

Inverse-design magnonic devices

论文作者

Wang, Qi, Chumak, Andrii V., Pirro, Philipp

论文摘要

镁质领域提供了一种新型的低功率信息处理,其中镁,旋转波的量子携带和处理数据而不是电子。最近展示了许多宏伟的设备,但是每个设备的开发都需要专门研究,通常,一种设备设计仅适用于一个功能。在这里,我们介绍了反设计镁的方法,其中可以首先指定任何功能,并使用基于反馈的计算算法来获得设备设计。我们的概念验证原型基于矩形铁磁区域,该区域可以使用方形的空隙进行图案。为了展示这种方法的普遍性,我们探索了线性,非线性和非磁性宏伟功能,并使用相同的算法来创建宏伟(DE-)多路复用器,非线性开关和循环器。因此,逆设计镁可用于开发高效的RF应用以及布尔和神经形态计算构建块。

The field of magnonics offers a new type of low-power information processing, in which magnons, the quanta of spin waves, carry and process data instead of electrons. Many magnonic devices were demonstrated recently, but the development of each of them requires specialized investigations and, usually, one device design is suitable for one function only. Here, we introduce the method of inverse-design magnonics, in which any functionality can be specified first, and a feedback-based computational algorithm is used to obtain the device design. Our proof-of-concept prototype is based on a rectangular ferromagnetic area which can be patterned using square shaped voids. To demonstrate the universality of this approach, we explore linear, nonlinear and nonreciprocal magnonic functionalities and use the same algorithm to create a magnonic (de-)multiplexer, a nonlinear switch and a circulator. Thus, inverse-design magnonics can be used to develop highly efficient rf applications as well as Boolean and neuromorphic computing building blocks.

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