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Unexpected ferromagnetic ordering enhancement with crystallite size growth observed in La0.5Ca0.5MnO3 nanoparticles

机译:在La 0.5 Ca 0.5 MnO 3 纳米粒子中观察到意想不到的铁磁有序化和晶粒尺寸增长

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摘要

In this paper, the physical properties of half-doped manganite La0.5Ca0.5MnO3 with crystallite sizes ranging from 15 to 40 nm are investigated. As expected, ferromagnetic order strengthens at expense of antiferromagnetic one as crystallite size is reduced to 15 nm. However, contrary to previously reported works, an enhancement of saturation magnetization is observed as crystallite size increases from 15 to 22 nm. This unexpected behavior is accompanied by an unusual cell volume variation that seems to induce ferromagnetic-like behavior at expense of antiferromagnetic one. Besides, field cooled hysteresis loops show exchange bias field and coercivity enhancement for increasing cooling fields, which suggest a kind of core-shell structure with AFM-FM coupling for crystallite sizes as small as 15 nm. It is expected that inner core orders antiferromagnetically, whereas uncompensated surface spins behave as spin glass with ferromagnetic-like ordering.
机译:本文研究了微晶尺寸为15至40nm的半掺杂锰La 0.5 Ca 0.5 MnO 3 的物理性质。 。正如预期的那样,随着微晶尺寸减小到15 nm,铁磁序会以反铁磁序为代价而增强。但是,与先前报道的工作相反,随着微晶尺寸从15nm增加到22nm,观察到了饱和磁化强度的增强。这种出乎意料的行为伴随着异常的细胞体积变化,该变化似乎诱导了类似铁磁的行为,但却以反铁磁为代价。此外,磁场冷却的磁滞回线显示出交换偏置场和矫顽力的增强,以增加冷却场,这表明一种具有AFM-FM耦合的核-壳结构可用于小至15 nm的微晶尺寸。预期内核会反铁磁地排列,而未补偿的表面自旋表现为具有铁磁状排列的自旋玻璃。

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