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首页> 外文期刊>Physica, B. Condensed Matter >Effect of high energy electron beam irradiation on the structural properties, electrical resistivity and thermopower of La0.5Sr0.5MnO3 manganites
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Effect of high energy electron beam irradiation on the structural properties, electrical resistivity and thermopower of La0.5Sr0.5MnO3 manganites

机译:高能电子束照射对LA0.5SR0.5MNO3锰结构性能,电阻率和热电器的影响

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摘要

Bulk samples of La0.5Sr0.5MnO3 manganite have been subjected to electron beam irradiation of different dosages. As a consequence, the structural and electronic transport properties viz resistivity and thermoelectric power are affected to some extent. The stoichiometric content of the sample is confirmed through Energy Dispersive X-ray spectroscopy. X-ray diffraction study of the samples (unexposed and exposed to electron beam radiation) show that the samples crystallize in a single phase rhombohedral structure. Insulating behavior is displayed in the temperature range 10-300 K investigation for all the samples. Temperature dependent thermoelectric power data reveals n-type conductivity in the entire temperature zone. At high temperatures, it is concluded through detailed analysis that both resistivity and thermopower conform to small polaron hopping model. On the other hand, variable range polaron hopping model elucidates the transport characteristics at low temperatures.
机译:LA0.5SR0.5MNO3锰石的批量样品已经受到不同剂量的电子束照射。 因此,结构和电子传输特性Viz电阻率和热电功率在一定程度上受到影响。 通过能量分散X射线光谱证实样品的化学计量含量。 样品的X射线衍射研究(未曝光和暴露于电子束辐射)表明样品在单相菱形结构中结晶。 绝缘行为显示在所有样品的温度范围内10-300 k调查中。 温度相关的热电功率数据在整个温度区中揭示了n型电导率。 在高温下,通过详细分析结束,即电阻率和热电机符合小极化型跳跃模型。 另一方面,可变范围Polaron跳跃模型在低温下阐明传输特性。

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