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Anisotropic magnetoresistance of individual CoFeB and Ni nanotubes with values of up to 1.4% at room temperature

机译:单个CoFeB和Ni纳米管在室温下的各向异性磁阻值高达1.4%

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Magnetic nanotubes (NTs) are interesting for magnetic memory and magnonic applications. We report magnetotransport experiments on individual 10 to 20 μm long Ni and CoFeB NTs with outer diameters ranging from 160 to 390 nm and film thicknesses of 20 to 40 nm. The anisotropic magnetoresistance (AMR) effect studied from 2 K to room temperature (RT) amounted to 1.4% and 0.1% for Ni and CoFeB NTs, respectively, at RT. We evaluated magnetometric demagnetization factors of about 0.7 for Ni and CoFeB NTs having considerably different saturation magnetization. The relatively large AMR value of the Ni nanotubes is promising for RT spintronic applications. The large saturation magnetization of CoFeB is useful in different fields such as magnonics and scanning probe microscopy using nanotubes as magnetic tips.
机译:磁性纳米管(NTs)对于磁性存储和大型应用很有趣。我们报告了单个的10至20μm长的Ni和CoFeB NT的磁传输实验,其外径范围为160至390 nm,膜厚度为20至40 nm。 Ni和CoFeB NT在室温下从2 K到室温(RT)研究的各向异性磁阻(AMR)效应分别为1.4%和0.1%。对于具有明显不同的饱和磁化强度的Ni和CoFeB NT,我们评估了约0.7的磁力退磁系数。 Ni纳米管相对较大的AMR值有望用于RT自旋电子学。 CoFeB的大饱和磁化强度在诸如纳米管和使用纳米管作为磁性探针的扫描探针显微镜等不同领域中很有用。

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