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首页> 外文期刊>Physical Review, B. Condensed Matter >INFLUENCE OF OXYGEN CONTENT ON THE STRUCTURAL, MAGNETOTRANSPORT, AND MAGNETIC PROPERTIES OF LAMNO3+DELTA
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INFLUENCE OF OXYGEN CONTENT ON THE STRUCTURAL, MAGNETOTRANSPORT, AND MAGNETIC PROPERTIES OF LAMNO3+DELTA

机译:氧含量对LAMNO3 +δ结构,磁输运和磁性的影响

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A systematic study of the effect of oxygen content on the structural, magnetotransport, and magnetic properties has been undertaken on a series of LaMnO3+delta samples, with delta=0, 0.025, 0.07, 0.1, and 0.15. Measurements of the ac initial magnetic susceptibility, magnetization, magnetoresistance, and neutron diffraction, including small-angle neutron scattering (SANS), were performed in the temperature range 1-320 K using high magnetic fields up to 12 T. The antiferromagnetic order found in LaMnO3 evolves towards a ferromagnetic order as delta increases. This behavior is accompanied by a drastic reduction of the static Jahn-Teller distortion of the MnO6 octahedra. The ferromagnetic coupling weakens for delta greater than or equal to 0.1, The magnetic behavior is interpreted by taking into account two effects caused by the increase in delta: cation vacancies and Mn4+/Mn3+ ratio enhancement. The orthorhombic crystallographic structure becomes unstable at room temperature for delta greater than or equal to 0.1. The sample delta=0.1 shows a structural transition from rhombohedral to orthorhombic below T-s approximate to 300 K with a huge change in the cell volume. All the studied compounds were found to be insulating at low temperatures with no appreciable magnetoresistance, except for delta=0.15, in which we observed a large value for the magnetoresistance. The SANS results indicate that magnetic clustering effects are important below T-c for delta greater than or equal to 0.07, which could explain the intriguing ferromagnetic insulator state. In the delta=0.07 and delta=0.10 samples we found at temperatures below T-c magnetic and structural anomalies that are characteristic of charge ordering. [References: 19]
机译:对一系列LaMnO3 +δ样品(δ= 0、0.025、0.07、0.1和0.15)进行了氧含量对结构,磁传输和磁性能影响的系统研究。交流初始磁化率,磁化强度,磁阻和中子衍射(包括小角中子散射(SANS))的测量是在1-320 K的温度范围内使用高达12 T的高磁场进行的。随着增量增加,LaMnO3向铁磁有序演化。此行为伴随着MnO6八面体的静态Jahn-Teller畸变的急剧减少。铁磁耦合在δ大于或等于0.1时会减弱。磁行为的解释是考虑了由δ增大引起的两个效应:阳离子空位和Mn4 + / Mn3 +比增强。斜方晶体结构在室温下变得不稳定,Δ大于或等于0.1。样品Δ= 0.1表示在T-s以下从菱面体到正交晶的结构过渡,大约为300 K,并且细胞体积发生了巨大变化。发现所有研究的化合物在低温下都是绝缘的,没有明显的磁阻,除了δ= 0.15,在该值中我们观察到较大的磁阻值。 SANS结果表明,对于大于或等于0.07的增量,在T-c以下,磁簇效应很重要,这可以解释有趣的铁磁绝缘体状态。在增量= 0.07和增量= 0.10的样本中,我们发现温度低于T-c磁性和结构异常,这是电荷排序的特征。 [参考:19]

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