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(011)-Pr(0.7)(Ca(0.6)Sr(0.4))(0.3)MnO₃/PMN-PT异质结构中各向异性应变诱导的异常渗流输运和巨电阻效应

Abnormal percolative transport and colossal electroresistance induced by anisotropic strain in (011)-Pr(0.7)(Ca(0.6)Sr(0.4))(0.3)MnO₃/PMN-PT heterostructure.

作者信息

Zhao Ying-Ying, Wang Jing, Kuang Hao, Hu Feng-Xia, Zhang Hong-Rui, Liu Yao, Zhang Ying, Wang Shuan-Hu, Wu Rong-Rong, Zhang Ming, Bao Li-Fu, Sun Ji-Rong, Shen Bao-Gen

机构信息

Beijing National Laboratory for Condensed Matter Physics and State Key Laboratory of Magnetism, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, P. R. China.

出版信息

Sci Rep. 2014 Nov 17;4:7075. doi: 10.1038/srep07075.

Abstract

Abnormal percolative transport in inhomogeneous systems has drawn increasing interests due to its deviation from the conventional percolation picture. However, its nature is still ambiguous partly due to the difficulty in obtaining controllable abnormal percolative transport behaviors. Here, we report the first observation of electric-field-controlled abnormal percolative transport in (011)-Pr(0.7)(Ca(0.6)Sr(0.4))(0.3)MnO3/0.7Pb(Mg(1/3)Nb(2/3))O3-0.3PbTiO3 heterostructure. By introducing an electric-field-induced in-plane anisotropic strain-field in a phase separated PCSMO film, we stimulate a significant inverse thermal hysteresis (~ -17.5 K) and positive colossal electroresistance (~11460%), which is found to be crucially orientation-dependent and completely inconsistent with the well accepted conventional percolation picture. Further investigations reveal that such abnormal inverse hysteresis is strongly related to the preferential formation of ferromagnetic metallic domains caused by in-plane anisotropic strain-field. Meanwhile, it is found that the positive colossal electroresistance should be ascribed to the coactions between the anisotropic strain and the polarization effect from the poling of the substrate which leads to orientation and bias-polarity dependencies for the colossal electroresistance. This work unambiguously evidences the indispensable role of the anisotropic strain-field in driving the abnormal percolative transport and provides a new perspective for well understanding the percolation mechanism in inhomogeneous systems.

摘要

非均匀系统中的异常渗流输运因其偏离传统渗流图像而引起了越来越多的关注。然而,其本质仍然模糊不清,部分原因是难以获得可控的异常渗流输运行为。在此,我们报道了在(011)-Pr(0.7)(Ca(0.6)Sr(0.4))(0.3)MnO3/0.7Pb(Mg(1/3)Nb(2/3))O3-0.3PbTiO3异质结构中首次观察到电场控制的异常渗流输运。通过在相分离的PCSMO薄膜中引入电场诱导的面内各向异性应变场,我们激发了显著的逆热滞回(~ -17.5 K)和正的巨磁电阻(~11460%),发现其与取向密切相关,且与广为接受的传统渗流图像完全不一致。进一步研究表明,这种异常逆滞回与面内各向异性应变场导致的铁磁金属畴的优先形成密切相关。同时,发现正的巨磁电阻应归因于各向异性应变与来自衬底极化的极化效应之间的共同作用,这导致了巨磁电阻的取向和偏置极性依赖性。这项工作明确证明了各向异性应变场在驱动异常渗流输运中不可或缺的作用,并为深入理解非均匀系统中的渗流机制提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e21/4233337/8780acd5e8e0/srep07075-f1.jpg

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