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Phase diagram and spin-glass phenomena in electron-doped La1-xHfxMnO3 (0.05 ≤ x ≤ 0.3) manganite oxides

机译:电子掺杂La1-xHfxmnO3(0.05≤x≤0.3)锰氧化物中的相图和自旋玻璃现象

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摘要

The effects of tetravalent hafnium doping on the structural, transport, and magnetic properties of polycrystalline La1−xHfxMnO3 (LHMO) (0.05 ≤ x ≤ 0.3) were investigated systematically. LHMO exhibited a typical colossal magnetoresistance effect via the double-exchange between Mn2+ and Mn3+ ions, instead of that between Mn3+ and Mn4+ ions in hole-doped manganites. A phase diagram was obtained for the first time through magnetization and resistance measurements in a broad temperature range. As the Hf concentration varied from x = 0.05 to 0.3, the Curie point and metal-to-insulator transition temperature increased significantly, whereas the magnetization and resistivity decreased remarkably. An abnormal enhancement of the magnetization was observed at about 42 K. It was further confirmed that a second magnetic phase MnO2 in LHMO gives rise to such a phenomenon. The possible causes are discussed in detail. The dynamic magnetic properties of LHMO, including relaxation and aging processes, were studied, demonstrating a spin-glass state at low temperature accompanied by a ferromagnetic phase.
机译:系统地研究了四价ha掺杂对多晶La1-xHfxMnO3(LHMO)(0.05≤x≤0.3)的结构,输运和磁性能的影响。 LHMO通过Mn2 +和Mn3 +离子之间的双交换而不是掺杂空穴的锰矿中Mn3 +和Mn4 +离子之间的双交换表现出典型的巨磁阻效应。通过在较宽的温度范围内进行磁化和电阻测量,首次获得了相图。当Hf的浓度从x = 0.05变为0.3时,居里点和金属-绝缘体的转变温度显着升高,而磁化强度和电阻率则显着降低。在约42K处观察到磁化强度的异常增强。进一步证实LHMO中的第二磁性相MnO 2引起这种现象。详细讨论了可能的原因。研究了LHMO的动态磁性能,包括弛豫和时效过程,证明了低温下具有铁磁相的自旋玻璃态。

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