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无磁场时磁振子自旋信息的各向同性传输。

Isotropic transmission of magnon spin information without a magnetic field.

作者信息

Haldar Arabinda, Tian Chang, Adeyeye Adekunle Olusola

机构信息

Department of Physics, Indian Institute of Technology Hyderabad, Kandi, Sangareddy, Telangana 502285, India.

Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore.

出版信息

Sci Adv. 2017 Jul 21;3(7):e1700638. doi: 10.1126/sciadv.1700638. eCollection 2017 Jul.

Abstract

Spin-wave devices (SWD), which use collective excitations of electronic spins as a carrier of information, are rapidly emerging as potential candidates for post-semiconductor non-charge-based technology. Isotropic in-plane propagating coherent spin waves (magnons), which require magnetization to be out of plane, is desirable in an SWD. However, because of lack of availability of low-damping perpendicular magnetic material, a usually well-known in-plane ferrimagnet yttrium iron garnet (YIG) is used with a large out-of-plane bias magnetic field, which tends to hinder the benefits of isotropic spin waves. We experimentally demonstrate an SWD that eliminates the requirement of external magnetic field to obtain perpendicular magnetization in an otherwise in-plane ferromagnet, NiFe or permalloy (Py), a typical choice for spin-wave microconduits. Perpendicular anisotropy in Py, as established by magnetic hysteresis measurements, was induced by the exchange-coupled Co/Pd multilayer. Isotropic propagation of magnon spin information has been experimentally shown in microconduits with three channels patterned at arbitrary angles.

摘要

自旋波器件(SWD)利用电子自旋的集体激发作为信息载体,正迅速成为后半导体非电荷基技术的潜在候选者。在自旋波器件中,需要磁化强度垂直于平面的各向同性面内传播相干自旋波(磁振子)是理想的。然而,由于缺乏低阻尼垂直磁性材料,通常熟知的面内铁氧体钇铁石榴石(YIG)需与较大的垂直偏置磁场一起使用,这往往会阻碍各向同性自旋波的优势。我们通过实验展示了一种自旋波器件,该器件无需外部磁场即可在原本的面内铁磁体镍铁合金或坡莫合金(Py)(自旋波微导管的典型选择)中获得垂直磁化。通过磁滞测量确定,Py中的垂直各向异性是由交换耦合的钴/钯多层膜诱导产生的。在具有以任意角度图案化的三个通道的微导管中,已通过实验证明了磁振子自旋信息的各向同性传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8931/5521997/291109f133d6/1700638-F1.jpg

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