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Charge ordering, stripes and phase separation in manganese perovskite oxides: An STM/STS study

机译:钙钛矿型锰氧化物中的电荷排序,条纹和相分离:STM / STS研究

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摘要

A microscopic characterisation of the phase transitions associated with colossal magnetoresistance (CMR) in manganese perovskite oxides is a very important ingredient in the quest of understanding its underlying mechanism. Scanning tunneling microscopy (STM) is most suitable to investigate some of their reported hallmarks, including charge ordering, lattice distortions, and electronic phase separation. Here we investigate Bi_(1-x)Ca_xMnO_3 (BCMO) with x=0.76. At this composition, BCMO develops an insulating charge-ordered phase upon cooling, whose study as a function of temperature will allow identifying atomic scale characteristics of the metal-insulator phase transition (MIT). We observe distinct atomic scale phases at temperatures above and below the MIT, with very different electronic and structural characteristics. Combining STM micrographs and currentvoltage tunneling characteristics, we find that charge ordering correlates both with the local conduction state (metallic or insulating) and the local structural order. Furthermore, STM shows coexistence of these phases as expected for a first order phase transition.
机译:钙钛矿型锰氧化物中与巨大磁阻(CMR)相关的相变的微观表征是寻求了解其基本机理的重要组成部分。扫描隧道显微镜(STM)最适合研究其报道的某些特征,包括电荷排序,晶格畸变和电子相分离。在这里,我们研究Bi_(1-x)Ca_xMnO_3(BCMO),x = 0.76。在这种成分下,BCMO在冷却时会形成一个绝缘的有序相,其研究随温度的变化将有助于确定金属-绝缘体相变(MIT)的原子尺度特征。我们在麻省理工学院以上和以下的温度下观察到不同的原子尺度相,具有非常不同的电子和结构特征。结合STM显微照片和电流电压隧穿特性,我们发现电荷顺序与局部导电状态(金属或绝缘)和局部结构顺序相关。此外,如一阶相变所预期的那样,STM显示出这些相的共存。

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