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Vertical La0.7Ca0.3MnO3 nanorods tailored by high magnetic field assisted pulsed laser deposition

机译:垂直La0.7Ca0.3MnO3纳米棒通过高磁场辅助脉冲激光沉积定制

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摘要

La0.7Ca0.3MnO3 (LCMO) thin films on (LaAlO3)0.3(Sr2AlTaO6)0.7 (001) [LSAT (001)] single crystal substrates have been prepared by high magnetic field assisted pulsed laser deposition (HMF-PLD) developed by ourselves. Uniformly sized and vertically aligned nanorod structures can be obtained under an applied high magnetic field above 5 T, and the dimension size of the nanorods can be manipulated by varying the applied magnetic field. It is found that the magnetic anisotropy is strongly correlated to the dimension size of the nanorods. A significantly enhanced low-field magnetoresistance (LFMR) of −36% under 0.5 T at 100 K can be obtained due to the enhanced carrier scattering at the vertical grain boundaries between the nanorods for the LCMO films. The growth mechanism of the nanorods has been also discussed, which can be attributed to the variation of deposition rate, adatom surface diffusion, and nucleation induced by the application of a high magnetic field in the film processing. The successful achievements of such vertical nanorod structures will provide an instructive route to investigate the physical nature of these nanostructures and achieve nanodevice manipulation.
机译:通过我们自己开发的高磁场辅助脉冲激光沉积(HMF-PLD)制备了(LaAlO3)0.3(Sr2AlTaO6)0.7(001)[LSAT(001)]单晶衬底上的La0.7Ca0.3MnO3(LCMO)薄膜。在高于5 T的强磁场下可以获得均匀尺寸和垂直排列的纳米棒结构,并且可以通过改变施加的磁场来操纵纳米棒的尺寸。已经发现,磁各向异性与纳米棒的尺寸大小密切相关。由于在LCMO薄膜的纳米棒之间的垂直晶界处载流子散射增强,在100 K下0.5 T下可获得-36%的显着增强的低场磁电阻(LFMR)-36%。还讨论了纳米棒的生长机理,这可以归因于在薄膜加工过程中施加高磁场引起的沉积速率,原子表面扩散和成核的变化。这种垂直纳米棒结构的成功成就将为研究这些纳米结构的物理性质并实现纳米器件操纵提供指导性途径。

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