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Structural and magnetic properties of Ni78Fe22 thin films sandwiched between low-softening-point glasses and application in spin devices

机译:夹在低软化点玻璃之间的Ni78Fe22薄膜的结构和磁性能及其在旋转装置中的应用

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We investigate the structural and magnetic properties of Ni78Fe22 thin films sandwiched between low softening-point (LSP) glasses, which can be used in spin quantum cross (SQC) devices utilizing stray magnetic fields generated from magnetic thin-film edges. We also calculate the stray magnetic field generated between the two edges of Ni78Fe22 thin-film electrodes in SQC devices and discuss the applicability to spin-filter devices. Using the established fabrication technique, we successfully demonstrate the formation of LSP-glass/Ni78Fe22/LSP-glass structures with smooth and clear interfaces. The coercivity of the Ni78Fe22 thin films is enhanced from 0.9 to 103 Oe by increasing the applied pressure from 0 to 1.0 MPa in the thermal pressing process. According to the random anisotropy model, the enhancement of the coercivity is attributed to the increase in the crystal grain size. The stray magnetic field is also uniformly generated from the Ni78Fe22 thin-film edge in the direction perpendicular to the cross section of the LSP-glass/Ni78Fe22/LSP-glass structures. Theoretical calculation reveals that a high stray field of approximately 5 kOe is generated when the distance between two edges of the Ni78Fe22 thin-film electrodes is less than 5 nm and the thickness of Ni78Fe22 is greater than 20 nm. These experimental and calculation results indicate that Ni78Fe22 thin films sandwiched between LSP glasses are useful as electrodes for SQC devices, serving as spin-filter devices. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们研究夹在低软化点(LSP)玻璃之间的Ni78Fe22薄膜的结构和磁性,该玻璃可用于利用自磁性薄膜边缘产生的杂散磁场的自旋量子交叉(SQC)设备中。我们还计算了SQC器件中Ni78Fe22薄膜电极的两个边缘之间产生的杂散磁场,并讨论了自旋滤波器器件的适用性。使用已建立的制造技术,我们成功地证明了具有光滑和清晰界面的LSP玻璃/ Ni78Fe22 / LSP玻璃结构的形成。通过在热压过程中将施加的压力从0 MPa增加到1.0 MPa,将Ni78Fe22薄膜的矫顽力从0.9 Oe提高到103 Oe。根据随机各向异性模型,矫顽力的提高归因于晶粒尺寸的增加。从Ni78Fe22薄膜边缘沿垂直于LSP玻璃/ Ni78Fe22 / LSP玻璃结构的横截面的方向也均匀地产生杂散磁场。理论计算表明,当Ni78Fe22薄膜电极的两个边缘之间的距离小于5 nm,且Ni78Fe22的厚度大于20 nm时,会产生大约5 kOe的高杂散场。这些实验和计算结果表明,夹在LSP玻璃之间的Ni78Fe22薄膜可用作SQC器件的电极,用作自旋过滤器。 (C)2016 Elsevier B.V.保留所有权利。

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