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Giant magnetoresistance effect in granular-type Co-Ag/Ag multilayers

机译:颗粒状Co-Ag / Ag多层膜的巨磁阻效应

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Abstract: For the granular type of Co-Ag (1.8 nm)/Ag multilayers with the Co contents of 22, 45, and 65 at%, the magneto-resistance ratio ($Delta@R/R) has a maximum found with respect to the AG spacer layer thickness. It is found that with increasing Co content the $Delta@R/R peak shifts towards thicker AG layers. For the Co-Ag/Ag multilayers with low Co contents, $Delta@R/R increases monotonically with increasing magnetic layer thickness, but has a maximum near the magnetic layer thickness of 2.2 nm for the sample having a higher Co content. The peak is thought as a result of the antiferromagnetic (AFM) coupling between the nearest Co clusters in neighboring magnetic layers. In the high field region, the magnetization and the square root of $Delta@R/R vary as a linear function of the reciprocal applied field for all multilayers. In the low field range, they are proportional to the applied field for samples with thin magnetic layers. !7
机译:摘要:对于Co含量为22、45和65 at%的颗粒状Co-Ag(1.8 nm)/ Ag多层膜,磁阻比($ Delta @ R / R)相对于到AG隔离层的厚度。发现随着Co含量的增加,$ Delta @ R / R峰向较厚的AG层移动。对于具有低Co含量的Co-Ag / Ag多层,$ Delta @ R / R随着磁性层厚度的增加而单调增加,但是对于具有较高Co含量的样品,在磁性层厚度附近具有最大值2.2nm。认为该峰是相邻磁层中最接近的Co簇之间反铁磁(AFM)耦合的结果。在高磁场区域中,对于所有多层,$ Delta @ R / R的磁化强度和平方根随所施加的倒数磁场的线性函数而变化。在低磁场范围内,它们与具有薄磁性层的样品的施加磁场成比例。 !7

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