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用于全磁子数据处理的磁振晶体管。

Magnon transistor for all-magnon data processing.

作者信息

Chumak Andrii V, Serga Alexander A, Hillebrands Burkard

机构信息

Fachbereich Physik and Landesforschungszentrum OPTIMAS, Technische Universität Kaiserslautern, Kaiserslautern 67663, Germany.

出版信息

Nat Commun. 2014 Aug 21;5:4700. doi: 10.1038/ncomms5700.

Abstract

An attractive direction in next-generation information processing is the development of systems employing particles or quasiparticles other than electrons--ideally with low dissipation--as information carriers. One such candidate is the magnon: the quasiparticle associated with the eigen-excitations of magnetic materials known as spin waves. The realization of single-chip all-magnon information systems demands the development of circuits in which magnon currents can be manipulated by magnons themselves. Using a magnonic crystal--an artificial magnetic material--to enhance nonlinear magnon-magnon interactions, we have succeeded in the realization of magnon-by-magnon control, and the development of a magnon transistor. We present a proof of concept three-terminal device fabricated from an electrically insulating magnetic material. We demonstrate that the density of magnons flowing from the transistor's source to its drain can be decreased three orders of magnitude by the injection of magnons into the transistor's gate.

摘要

下一代信息处理领域一个引人关注的方向是开发使用电子以外的粒子或准粒子(理想情况下具有低耗散特性)作为信息载体的系统。其中一个候选对象是磁振子:与被称为自旋波的磁性材料本征激发相关的准粒子。单芯片全磁振子信息系统的实现需要开发能让磁振子电流由磁振子自身操控的电路。通过使用磁振子晶体(一种人工磁性材料)来增强非线性磁振子 - 磁振子相互作用,我们成功实现了逐个磁振子控制,并开发出了磁振子晶体管。我们展示了一种由电绝缘磁性材料制成的概念验证三端器件。我们证明,通过向晶体管的栅极注入磁振子,从晶体管源极流向漏极的磁振子密度可降低三个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de3c/4143911/5a7dc6058e9b/ncomms5700-f1.jpg

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