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Optimization of Pr0.9Ca_(0.1)MnO_3 thin films with varying in-situ oxygen annealing treatments

机译:优化PR0.9CA_(0.1)MNO_3薄膜,具有不同的原位氧气退火处理

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The influence of in situ oxygen annealings on narrow electronic bandwidth Pr_(0.9)Ca_(0.1)MnO_3 films are investigated in the complex phase separation region. Measurements by x-ray diffractometry and SQUID magnetometry reveal that relatively high deposition temperature at 700°C relaxes the lattice by twin boundaries while the lower deposition temperature at 500°C with higher post-annealing temperature of 700°C relaxes the substrate induced strain via oxygen absorption and makes the film structure more homogeneous. This behaviour is clearly supported by the decrease of ferromagnetic ordering due to decrease of Mn~(3+) ions in films oxygen annealed at high temperatures and this phenomenon is widely discussed with the models of double-exchange interaction, trapping of carriers in the oxygen vacancies and formation of magnetic polarons. The results show unambiguously that because the oxygen content tailors many physical properties dramatically, the annealing treatments are in very important role when optimizing these materials for future applications.
机译:在复杂的相分离区域中研究了在窄电子带宽PR_(0.9)Ca_(0.1)MNO_3膜上的原位氧退火的影响。 X射线衍射测量和鱿鱼磁体测量显示,700℃的相对高的沉积温度通过双界面松弛,而在500℃下的较低沉积温度为700°C的较低沉积温度,通过氧气吸收并使膜结构更加均匀。由于在高温下退火的薄膜氧气中的Mn〜(3+)离子的降低而降低了铁磁性排序的这种行为,并且通过双交换相互作用的模型探讨了这种现象,氧气中的载体捕获的这种现象是广泛讨论的磁极化的空缺和形成。结果明确地显示,因为氧气含量裁定了许多物理性质,在优化这些材料以供未来的应用时,退火处理在非常重要的作用。

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