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Oscillating Voltage Dependence of High-Frequency Impedance in Magnetic Tunneling Junctions

机译:磁隧道结中高频阻抗的振荡电压依赖性

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Oscillating voltage (VOs), which depends on the frequency dependence of the magnetoimpedance (MI) effect, was applied to study a magnetic tunneling junction (MTJ) of Ru(5 nm)/Cu(10 nm)/Ru(5 nm)/IrMn(10 nm)/CoFeB(4 nm)/Al2 O3/CoFeB(4 nm)/Ru(5 nm) at frequencies up to 40 MHz. The MI ratio decreased as the VOs was increased. The MI ratio turned from positive to negative at a certain frequency. An equivalent circuit model was employed to analyze the results. The fact that MTJ can be regarded as the composition of a resistance component and two sets of parallel resistance (R) and capacitance (C) components in series has been utilized to describe the individual impedance contribution from the lead of cross pattern, barrier, and interface. The resistance (Rbarrier) and capacitance (Cbarrier) of the barrier effect are functions of VOs. The Rbarrier decreases as the VOs increases, However, C barrier behaves the opposite way. The tendency is for interfacial resistance Rinterface and interfacial capacitance Cinterface to have opposite results with increasing VOs . This work provides a detailed investigation of high-frequency transport behavior subjected to VOs, especially useful for MTJ characterization
机译:取决于磁阻抗(MI)效应的频率依赖性的振荡电压(VOs)被用于研究Ru(5 nm)/ Cu(10 nm)/ Ru(5 nm)/ IrMn(10 nm)/ CoFeB(4 nm)/ Al2 O3 / CoFeB(4 nm)/ Ru(5 nm),频率高达40 MHz。 MI比率随着VOs的增加而降低。 MI比率以一定频率从正变为负。使用等效电路模型来分析结果。 MTJ可以看作是电阻成分的组成,而两组并联的并联电阻(R)和电容(C)成分已被用来描述交叉图案,势垒和接口。势垒效应的电阻(Rbarrier)和电容(Cbarrier)是VO的函数。 Rbarrier随着VOs的增加而减小,但是C势垒的行为相反。随着VOs的增加,界面电阻Rinterface和界面电容Cinterface的趋势相反。这项工作提供了对受VO影响的高频传输行为的详细研究,这对于MTJ表征特别有用

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