Centro Atómico Bariloche, 8400 S C de Bariloche, RN, Argentina.
J Phys Condens Matter. 2013 Jul 24;25(29):296003. doi: 10.1088/0953-8984/25/29/296003. Epub 2013 Jun 27.
We have studied the magnetic behaviour of half-doped manganite Y0.5Ca0.5MnO3 in an extended range of temperatures by means of magnetic susceptibility, χ(T), and electron spin resonance (ESR) experiments. At high temperature the system crystallizes in an orthorhombic structure. The resistivity value, ρ ≃ 0.05 Ω cm at 500 K, indicates a metallic behaviour, while the Curie-Weiss dependence of χ(T) and the thermal evolution of the ESR parameters are very well described by a model that considers a system conformed by localized Mn(4+) cores, [Formula: see text], and itinerant, eg, electrons. The strong coupling between t2g and eg electrons results in an enhanced Curie constant and an FM Curie-Weiss temperature that overcomes the AFM interactions between the [Formula: see text] cores. A transition to a more distorted phase is observed at T ≈ 500 K and signatures of localization of the eg electrons appear in the χ(T) behaviour below 300 K. A new Curie-Weiss regime is observed, where the Curie-constant value is consistent with dimer formation. Based on mean-field calculations, the dimer formation is predicted as a function of the interaction strength between the t2g and eg electrons.
我们通过磁化率 χ(T) 和电子自旋共振 (ESR) 实验研究了半掺杂锰酸盐 Y0.5Ca0.5MnO3 在更宽温度范围内的磁行为。在高温下,该系统以正交结构结晶。电阻率值 ρ ≃ 0.05 Ω cm 在 500 K 时,表明其具有金属行为,而 χ(T) 的居里-外斯依赖性和 ESR 参数的热演化可以很好地用一个模型来描述,该模型认为系统由局域 Mn(4+) 核 [Formula: see text] 和巡游 eg 电子组成。t2g 和 eg 电子之间的强耦合导致居里常数增加,FM 居里-外斯温度克服了 [Formula: see text] 核之间的 AFM 相互作用。在 T ≈ 500 K 时观察到向更扭曲相的转变,并且在 300 K 以下 χ(T) 行为中出现 eg 电子局域化的迹象。观察到一个新的居里-外斯区域,其中居里常数的值与二聚体形成一致。基于平均场计算,预测了二聚体形成是 t2g 和 eg 电子之间相互作用强度的函数。