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首页> 外文期刊>ACS nano >Large, controllable spikes of magnetoresistance in La_(2/3)Ca _(1/3)MnO_3/SrTiO_3 superlattices
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Large, controllable spikes of magnetoresistance in La_(2/3)Ca _(1/3)MnO_3/SrTiO_3 superlattices

机译:La_(2/3)Ca _(1/3)MnO_3 / SrTiO_3超晶格中大的可控磁尖峰

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摘要

We have investigated superlattices consisting of up to 30 epitaxial nanomultilayers (3-7 nm thick) of ferromagnetic La2/3Ca 1/3MnO3 (LCMO) and insulating SrTiO3 (STO) hybrids. The superlattices demonstrate dramatic shifts of Curie temperature, indicating the possibility of its tunability. The metal-insulator transition (MIT) has been observed around 140 K. Below the MIT temperature, the superlattices have shown sharp drops of resistivity, facilitating the largest and sharpest magnetoresistance peaks (>2000%) ever observed in LCMO films and superlattices at low temperatures. The observed experimental results can be explained in the frame of the phase separation model in manganites with well-organized structures. The results of magnetic and transport measurements of such hybrid structures are discussed, indicating a magnetodielectric effect in STO interlayers. The magnetic and transport properties of the superlattices are shown to be technology-dependent, experiencing dimensional transitions, which enables the creation of structures with prescribed magnetoresistance characteristics for a broad range of applications.
机译:我们研究了由30个铁磁性La2 / 3Ca 1 / 3MnO3(LCMO)和绝缘SrTiO3(STO)杂化层组成的外延纳米多层(3-7 nm厚)的超晶格。超晶格显示居里温度发生剧烈变化,表明其可调性的可能性。在140 K附近观察到金属-绝缘体转变(MIT)。在MIT温度以下,超晶格显示出电阻率的急剧下降,促进了LCMO薄膜和超晶格在低温度下观察到的最大和最尖锐的磁阻峰(> 2000%)。温度。观察到的实验结果可以在具有良好组织结构的锰矿的相分离模型的框架中进行解释。讨论了这种混合结构的磁和输运测量结果,表明了STO中间层中的磁电效应。超晶格的磁性和传输特性显示出与技术有关,并且经历了尺寸跃迁,这使得能够创建具有规定磁阻特性的结构,从而可用于广泛的应用。

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