P G Department of Applied Physics and Ballistics, F M University, Balasore, India.
J Phys Condens Matter. 2010 Sep 22;22(37):376003. doi: 10.1088/0953-8984/22/37/376003. Epub 2010 Aug 31.
We report here the microscopic theory of the Raman spectra of the colossal magnetoresistive (CMR) manganite systems. The system is described by a model Hamiltonian consisting of the double exchange interaction in addition to the charge ordering interaction in the e(g) band and spin-spin interaction among the t(2g) core electrons. Further the phonon coupling to the conduction electron density is incorporated in the model for phonons in the harmonic approximation. The spectral density function for the Raman spectra is calculated from the imaginary part of the phonon Green's function. The calculated spectra display the Raman active bare phonon peak along with the charge ordering peak. The magnetic field and temperature dependence of the charge ordering peak agrees with the 480 cm(-1) JT mode observed in the experiments. The evolution of this mode is investigated in the report.
我们在此报告巨磁电阻 (CMR) 锰氧化物系统的拉曼光谱的微观理论。该系统由一个哈密顿量模型描述,其中包括双交换相互作用,以及 e(g) 带中的电荷有序相互作用和 t(2g) 核心电子之间的自旋-自旋相互作用。此外,在模型中还考虑了声子与导带电子密度的耦合,用于声子的谐波近似。拉曼光谱的光谱密度函数是从声子格林函数的虚部计算得出的。计算出的光谱显示了拉曼活性的裸声子峰以及电荷有序峰。电荷有序峰的磁场和温度依赖性与实验中观察到的 480 cm(-1) JT 模式一致。本报告研究了该模式的演化。