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Giant sharp and persistent converse magnetoelectric effects in multiferroic epitaxial heterostructures

机译:多铁外延异质结构中巨大的尖锐和持久的逆磁电效应

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Magnetoelectric coupling between magnetic and electrical properties presents valuable degrees of freedom for applications. The two most promising scenarios are magnetic-field sensors that could replace low-temperature superconducting quantum interference devices, and electric-write magnetic-read memory devices that combine the best of ferroelectric and magnetic random-access memory. The former scenario requires magnetically induced continuous and reversible changes in electrical polarization. These are commonly observed, but the coupling constants thus obtained are invalid for data-storage applications, where the more difficult to achieve and rarely studied magnetic response to an electric field is required. Here, we demonstrate electrically induced giant, sharp and persistent magnetic changes (up to 2.3 x 10~(-7) s m~(-1)) at a single epitaxial interface in ferromagnetic 40 nm La_(0.67)Sr_(0.33)MnO_3 films on 0.5 mm ferroelectric BaTiO_3 substrates. X-ray diffraction confirms strain coupling via ferroelastic non-180° BaTiO_3 domains. Our findings are valid over a wide range of temperatures including room temperature, and should inspire further study with single epitaxial interfaces.
机译:磁性能和电性能之间的磁电耦合为应用提供了宝贵的自由度。两种最有前途的方案是可以替代低温超导量子干扰设备的磁场传感器,以及结合了铁电和磁性随机存取存储器的优点的电写磁读存储设备。前一种情况需要磁感应引起的极化连续和可逆变化。这些通常都可以观察到,但是这样获得的耦合常数对于数据存储应用是无效的,在数据​​存储应用中,实现起来更加困难,并且对电场的磁响应的研究很少。在这里,我们展示了在铁磁40 nm La_(0.67)Sr_(0.33)MnO_3薄膜的单个外延界面上电感应的巨大,尖锐而持久的磁变化(高达2.3 x 10〜(-7)sm〜(-1))。在0.5毫米铁电BaTiO_3衬底上。 X射线衍射证实了通过铁弹性非180°BaTiO_3域的应变耦合。我们的发现在包括室温在内的各种温度范围内都是有效的,并且应该激发单外延界面的进一步研究。

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