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Enhanced magnetoelectric effect in heterostructure of magnetostrictive alloy bars and piezoelectric single-crystal transformer

机译:磁致伸缩合金棒和压电单晶变压器异质结构中增强的磁电效应

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摘要

We report an enhanced magnetoelectric (ME) effect in a heterostructure consisting of a long-type, longitudinally–longitudinally polarized 0.71Pb(Mg₁/₃Nb₂/₃)O₃–0.29PbTiO₃ (PMN-PT) piezoelectric single-crystal transformer with its input part sandwiched between two longitudinally magnetized Tb₀.₃Dy₀.₇Fe₁.₉₂ (Terfenol-D) magnetostrictive alloy bars. The observed ME effect has two independent operational modes: namely, ME sensing mode and ME transduction mode. The ME sensing mode features a large ME voltage coefficient (αV) of ∼0.32 V/Oe over a flat frequency range of 1–50 kHz, while the ME transduction mode possesses two colossal resonance αV of 7.6 and 7.9 V/Oe, corresponding to the first and second longitudinal resonances, at 56.2 and 127.9 kHz, respectively. This enhanced dual-mode ME effect not only enables the application potential of the heterostructure, but also advances the technology of power-free ME sensors and transducers.
机译:我们报告了一种异质结构中增强的磁电效应,该异质结构包括长型,纵向-纵向极化的0.71Pb(Mg₁/₃Nb2 /₃)O₃–0.29PbTiO₃(PMN-PT)压电单晶变压器,其输入部分夹在两个纵向磁化的Tb 3·Dy 3·Fe 3·2(Terfenol-D)磁致伸缩合金棒之间。观察到的ME效应具有两个独立的操作模式:ME感测模式和ME转导模式。 ME感应模式在1–50 kHz的平坦频率范围内具有约0.32 V / Oe的大ME电压系数(αV),而ME转换模式具有7.6和7.9 V / Oe的两个巨大共振αV,对应于第一和第二纵向共振分别在56.2和127.9 kHz。这种增强的双模ME效应不仅可以发挥异质结构的应用潜力,而且还可以提高无电ME传感器和换能器的技术。

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