${rm SnO}_{2}$ and Cu-Zn Ferrite were deposited by rf-sputtering. The effect of spacer layer Effect of Spacer Layer Thickness on the Magnetic Properties of <formula formulatype='inline'><tex Notation='TeX'>$({hbox {SnO}}_{2}/{hbox {Cu–Zn}} {hbox {Ferrite}})_{rm n}$</tex></formula> Multilayers
首页> 外文期刊>Magnetics, IEEE Transactions on >Effect of Spacer Layer Thickness on the Magnetic Properties of $({hbox {SnO}}_{2}/{hbox {Cu–Zn}} {hbox {Ferrite}})_{rm n}$ Multilayers
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Effect of Spacer Layer Thickness on the Magnetic Properties of $({hbox {SnO}}_{2}/{hbox {Cu–Zn}} {hbox {Ferrite}})_{rm n}$ Multilayers

机译:间隔层厚度对<分子式> inline“> $({hbox {SnO}} _ {2} / {hbox {Cu–Zn}} {hbox {铁氧体}})_ {rm n} $ 多层

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摘要

Multilayers (ML) of ${rm SnO}_{2}$ and Cu-Zn Ferrite were deposited by rf-sputtering. The effect of spacer layer $({rm SnO}_{2})$ thickness on the structural and magnetic properties of ML were studied. The disorder and strain in the system is found to increase with increasing spacer layer thickness. The interlayer coupling is found to decrease with increasing ${rm SnO}_{2}$ layer thickness. The FMR intensity, magnetization and the exchange coupling strength initially increases then decreases with increasing ${rm SnO}_{2}$ thickness. This behavior may be attributed to the oscillation in the exchange coupling across the non magnetic layer due to quantum interference of the electron waves reflected from the interfaces. The ML exhibit uniaxial anisotropy and the ML are found to be more homogeneous when the film normal is at an angle of 40$^{circ}$ with the applied field. Decreasing magnetic moment and increasing resonance field at low temperatures indicated the presence of antiferromagnetic interactions in these ML.
机译:通过射频溅射沉积 $ {rm SnO} _ {2} $ 和Cu-Zn铁氧体的多层(ML) 。间隔层 $({rm SnO} _ {2})$ 厚度对ML的结构和磁性的影响被研究了。发现系统中的无序和应变随着间隔层厚度的增加而增加。发现层间耦合随着 $ {rm SnO} _ {2} $ 层厚度的增加而减小。 FMR强度,磁化强度和交换耦合强度最初随增大而减小,然后随 $ {rm SnO} _ {2} $ 增大而减小厚度。该行为可归因于由于从界面反射的电子波的量子干涉而导致的跨非磁性层的交换耦合中的振荡。当薄膜法线成40°角时,ML表现出单轴各向异性,并且发现ML更均匀。<公式>表达式类型=“ inline”> $ ^ {circ} $ 与应用字段。低温下磁矩的减小和共振场的增大表明这些ML中存在反铁磁相互作用。

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