首页> 外文期刊>IEEE transactions on nanotechnology >Investigation of the Effect of Microstructure and Grain Boundaries in Nanostructured CMR Thin Films Using Scanning Tunneling Microscopy (STM) and Local Conductance Map (LCMAP)
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Investigation of the Effect of Microstructure and Grain Boundaries in Nanostructured CMR Thin Films Using Scanning Tunneling Microscopy (STM) and Local Conductance Map (LCMAP)

机译:使用扫描隧道显微镜(STM)和局部电导图(LCMAP)研究纳米结构CMR薄膜中微结构和晶界的影响

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We have investigated the spatially resolved local electronic properties of a nanostructured film of a colossal magnetoresistive (CMR) material by local conductance mapping (LCMAP) using a variable temperature scanning tunneling microscope (STM) operating in a magnetic field. The nanostructured thin films (thickness ap500 nm) of the CMR material La0.67Sr0.33MnO3 (LSMO) on silicon substrates were prepared using chemical solution deposition (CSD) process. These films have a large density of natural incoherent grain boundaries (GBs) which leads to significantly different behavior compared to oriented and epitaxial films of the same composition. Due to the presence of the GBs, these films show substantial low field magnetoresistance (LFMR) followed by a slower and almost linear decrease at higher fields and this is found to be strictly dependent on particle size. Most of the mechanisms proposed to explain the LFMR in the GB are based on tunneling through the GB. The purpose of this study is to use different STM based techniques to image these inhomogeneities and quantify them to the extent possible. In particular, we study the effect of grain size and the grain boundaries and their role in the electrical transport in nanostructured films of CMR materials
机译:我们已经通过使用在磁场中运行的可变温度扫描隧道显微镜(STM)通过局部电导图(LCMAP)研究了巨大磁阻(CMR)材料的纳米结构膜的空间分辨局部电子特性。使用化学溶液沉积(CSD)工艺制备了CMR材料La0.67Sr0.33MnO3(LSMO)在硅基板上的纳米结构薄膜(厚度ap500 nm)。这些薄膜具有高密度的自然非相干晶粒边界(GBs),与相同组成的定向薄膜和外延薄膜相比,其行为明显不同。由于存在GBs,这些薄膜显示出相当低的场磁阻(LFMR),然后在较高的场上出现缓慢且几乎线性的下降,并且发现这严格取决于颗粒尺寸。提议用来解释GB中的LFMR的大多数机制都基于通过GB的隧道传输。这项研究的目的是使用不同的基于STM的技术对这些不均匀性进行成像,并在可能的范围内对其进行量化。特别是,我们研究了CMR材料纳米结构薄膜中晶粒尺寸和晶界的影响及其在电传输中的作用

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