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Exchange Bias In Zinc Ferrite-FeNiMoB Based Metallic Glass Composite Thin Films

机译:基于铁素体 - Fenimob的金属玻璃复合薄膜交换偏置

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The Exchange bias phenomenon and methods to manipulate the bias field in a controlled manner are thrust areas in magnetism due to its sophisticated theoretical concepts as well as advanced technological utility in the field of spintronics. The Exchange bias effect is observed as a result of ferromagnetic-antiferromagnetic (FM-AFM) exchange interaction, usually observed as a loop shift on field cooling below the Neel temperature of AFM. In the present study, we have chosen zinc ferrite which is a well known antiferromagnet, and FeNiMoB based metallic glass as the ferromagnet. The films were prepared by RF sputtering technique. The thickness and composition was obtained by RBS. The magnetic studies using SQUID VSM indicate exchange bias effect in the system. The effect of thermal annealing on exchange bias effect was studied. The observed exchange bias in the zinc ferrite-FeNiMoB system is not due to FM-AFM coupling but due to spin glass-ferromagnetic interaction.
机译:以受控方式操纵偏置场的交换偏置现象和方法是由于其复杂的理论概念以及闪蒸的领域的先进技术效用,磁力的推力区域。由于铁磁 - 反铁磁性(FM-AFM)交换相互作用的结果观察到交换偏置效应,通常观察到在AFM的NEER温度以下的磁场冷却的环路偏移。在本研究中,我们选择了锌铁氧体,该铁氧体是众所周知的反霉菌和基于Fenimob的金属玻璃作为铁磁体。通过RF溅射技术制备薄膜。通过RB获得厚度和组合物。使用鱿鱼VSM的磁性研究表明系统中的交换偏置效应。研究了热退火对交换偏置效应的影响。锌铁氧体 - Fenimob系统中观察到的交换偏压不是由于FM-AFM联轴器,而是由于旋转玻璃 - 铁磁相互作用。

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