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Carrier density change in the colossal-magnetoresistance pyrochlore Tl2Mn2O7

机译:巨磁阻烧绿石Tl2Mn2O7中的载流子密度变化

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Hall resistivity and thermopower have been measured for the colossal magnetoresistance material Tl2Mn2O7 over wide temperature and magnetic-field ranges. These measurements revealed that a small number of free-electron-like carriers are responsible for the magnetotransport properties. In contrast to perovskite colassal-magnetoresistance (CMR) materials, the anomalous Hall effect is negligibly small even in the ferromagnetic state. An important property of Tl2Mn2O7 is that the carrier density changes with temperature and magnetic field. The carrier density increases near Te as the temperature is lowered or as the magnetic field is increased, which explains the CMR of this material. The conduction-band edge shift caused by the development of magnetization is a possible mechanism causing the carrier density change. [References: 32]
机译:已经在宽的温度和磁场范围内测量了巨大的磁阻材料Tl2Mn2O7的霍尔电阻率和热功率。这些测量结果表明,少量的类似自由电子的载流子负责磁传输特性。与钙钛矿的准磁致电阻(CMR)材料相比,即使在铁磁状态下,异常霍尔效应也可以忽略不计。 Tl2Mn2O7的一个重要特性是载流子密度随温度和磁场而变化。随着温度降低或磁场增加,载流子密度在Te附近增加,这解释了这种材料的CMR。由磁化的发展引起的导带边缘偏移是引起载流子密度变化的可能机制。 [参考:32]

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