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Magnetostrictive thin films for microwave spintronics

机译:微波自旋电子学的磁致伸缩薄膜

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摘要

Multiferroic composite materials, consisting of coupled ferromagnetic and piezoelectric phases, are of great importance in the drive towards creating faster, smaller and more energy efficient devices for information and communications technologies. Such devices require thin ferromagnetic films with large magnetostriction and narrow microwave resonance linewidths. Both properties are often degraded, compared to bulk materials, due to structural imperfections and interface effects in the thin films. We report the development of epitaxial thin films of Galfenol (Fe81Ga19) with magnetostriction as large as the best reported values for bulk material. This allows the magnetic anisotropy and microwave resonant frequency to be tuned by voltage-induced strain, with a larger magnetoelectric response and a narrower linewidth than any previously reported Galfenol thin films. The combination of these properties make epitaxial thin films excellent candidates for developing tunable devices for magnetic information storage, processing and microwave communications.
机译:由铁磁相和压电相组成的多铁复合材料在为信息和通信技术创造更快,更小,更节能的设备方面具有重要意义。这样的装置需要具有大的磁致伸缩和窄的微波谐振线宽的铁磁薄膜。与大块材料相比,由于薄膜中的结构缺陷和界面效应,两种性能通常都会下降。我们报道了与磁致伸缩一样大的Galfenol(Fe81Ga19)外延薄膜的发展情况,该薄膜的最大报道值为散装材料。与以前报道的Galfenol薄膜相比,这可以通过电压感应应变来调整磁各向异性和微波共振频率,并具有更大的磁电响应和更窄的线宽。这些特性的组合使外延薄膜成为开发用于磁信息存储,处理和微波通信的可调设备的极佳候选者。

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