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首页> 外文期刊>Physica status solidi, B. Basic research >Coupling of Small Lattice Polarons to Magnetic Field in Magnetoresistive Manganites
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Coupling of Small Lattice Polarons to Magnetic Field in Magnetoresistive Manganites

机译:磁阻锰矿中小晶格极化子与磁场的耦合

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We report Extended X-Ray Absorption Fine Structure measurements at the Mn K absorption edge on hole doped manganese oxides La_(1-x)Ca_xMnO_3 in a wide temperature range above and below the metal-insulator transition temperature in presence of a magnetic field. In accordance with previous studies an anomalous increase in the Debye-Waller factors is detected at the phase transition in the first coordination shell made up of O atoms. This is due to a local structural deformation around Mn~(3+) atoms associated with the Jahn-Teller effect and the formation of polarons. The application of a magnetic field results in a variation of this deformation with a thermal behaviour that closely resembles that of the magnetoresistance. This confirms the relevance of the polarons on the conductivity properties of such materials. The magnetic field has a huge effect on the second coordination shell probably related with the change of the Mn-O-Mn angle upon application of the magnetic field.
机译:我们报告了在存在磁场的情况下,在高于和低于金属绝缘体转变温度的较宽温度范围内,掺杂空穴的锰氧化物La_(1-x)Ca_xMnO_3的Mn K吸收边缘处的扩展X射线吸收精细结构测量。根据先前的研究,在由O原子组成的第一个配位壳中的相变处检测到Debye-Waller因子异常增加。这是由于与Jahn-Teller效应和极化子形成有关的Mn〜(3+)原子周围的局部结构变形。磁场的施加导致这种变形的变化,其热行为与磁阻的热行为极为相似。这证实了极化子与这种材料的电导率特性有关。磁场对第二配位壳具有巨大的影响,可能与施加磁场时Mn-O-Mn角的变化有关。

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