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Non-Volatile Ferroelectric Switching of Ferromagnetic Resonance in NiFe/PLZT Multiferroic Thin Film Heterostructures

机译:NiFe / PLZT多铁性薄膜异质结构中铁磁共振的非易失性铁电开关

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摘要

Magnetoelectric effect, arising from the interfacial coupling between magnetic and electrical order parameters, has recently emerged as a robust means to electrically manipulate the magnetic properties in multiferroic heterostructures. Challenge remains as finding an energy efficient way to modify the distinct magnetic states in a reliable, reversible, and non-volatile manner. Here we report ferroelectric switching of ferromagnetic resonance in multiferroic bilayers consisting of ultrathin ferromagnetic NiFe and ferroelectric Pb0.92La0.08Zr0.52Ti0.48O3 (PLZT) films, where the magnetic anisotropy of NiFe can be electrically modified by low voltages. Ferromagnetic resonance measurements confirm that the interfacial charge-mediated magnetoelectric effect is dominant in NiFe/PLZT heterostructures. Non-volatile modification of ferromagnetic resonance field is demonstrated by applying voltage pulses. The ferroelectric switching of magnetic anisotropy exhibits extensive applications in energy-efficient electronic devices such as magnetoelectric random access memories, magnetic field sensors, and tunable radio frequency (RF)/microwave devices.
机译:由磁和电有序参数之间的界面耦合引起的磁电效应,最近已成为一种在多铁性异质结构中电操纵磁性能的可靠方法。面临的挑战仍然是寻找一种高效节能的方式,以可靠,可逆和非易失的方式修改不同的磁态。在这里,我们报告了由超薄铁磁NiFe和铁电Pb0.92La0.08Zr0.52Ti0.48O3(PLZT)膜组成的多层铁磁双层中铁磁谐振的铁电开关,其中NiFe的磁各向异性可以通过低电压进行电修饰。铁磁共振测量证实,界面电荷介导的磁电效应在NiFe / PLZT异质结构中占主导地位。通过施加电压脉冲来证明铁磁共振场的非易失性修改。磁各向异性的铁电开关在高能效电子设备中具有广泛的应用,例如磁电随机存取存储器,磁场传感器和可调射频(RF)/微波设备。

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