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Nonvolatile, reversible electric-field controlled switching of remanent magnetization in multifunctional ferromagnetic/ferroelectric hybrids

机译:多功能铁磁/铁电混合体中非易失性,可逆电场控制的剩余磁化强度开关

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摘要

In spin-mechanics, the magnetoelastic coupling in ferromagnetic/ferroelectric hybrid devices is exploited in order to realize an electric-voltage control of magnetization orientation. To this end, different voltage-induced elastic strain states are used to generate different magnetization orientations. In our approach, we take advantage of the hysteretic expansion and contraction of a commercial piezoelectric actuator as a function of electrical voltage to deterministically select one of two electro-remanent elastic strain states. We investigate the resulting magnetic response in a nickel thin film/piezoelectric actuator hybrid device at room temperature, using simultaneous magneto-optical Kerr effect and magnetotransport measurements. The magnetic properties of the hybrid can be consistently described in a macrospin model, i.e., in terms of a single magnetic domain. At zero external magnetic field, the magnetization orientation in the two electro-remanent strain states differs by 15°, which corresponds to a magnetoresistance change of 0.5%. These results demonstrate that the spin-mechanics scheme indeed enables a nonvolatile electrically read- and writable memory bit where the information is encoded in a magnetic property.
机译:在自旋力学中,利用铁磁/铁电混合装置中的磁弹性耦合来实现磁化取向的电压控制。为此,使用不同的电压感应的弹性应变状态来生成不同的磁化方向。在我们的方法中,我们利用商用压电致动器的磁滞膨胀和收缩作为电压的函数来确定性地选择两个电剩弹性应变状态之一。我们使用同时​​的磁光克尔效应和磁传输测量,研究了室温下镍薄膜/压电致动器混合装置中产生的磁响应。杂化物的磁性能可以在宏观自旋模型中一致地描述,即就单个磁畴而言。在零外部磁场下,两个电残余应变状态下的磁化方向相差15°,这对应于0.5%的磁阻变化。这些结果表明,自旋机制方案确实实现了非易失性电可读写存储位,其中信息以磁特性进行编码。

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