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Density functional theory-based study of the magnetic and optical properties of PbMO3 (M = Cr, Fe) using the modified BeckeJohnson mBJ functional

机译:基于密度的函数理论的PBMO3(M = Cr,Fe)的磁性和光学性质的研究使用改进的Beckejohnson MBJ功能

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In this study, we employed the density functional theory (DFT) approach using WIEN2k code to study the magnetic and optical behaviors of PbCrO3 and PbFeO3 perovskites in both cubic and tetragonal phases. We determined the stability of the ferromagnetic state in terms of the enthalpy of formation, the half-metallic behavior, and spin polarization. The origin and nature of the ferromagnetic state were attributed to John-Teller distortion and a super-exchange mechanism. Comparisons of the calculated crystal field, John Teller distortion, and exchange energies indicated the stability of the ferromagnetic nature. Due to strong hybridization, the magnetic moment was reduced at the Cr/Fe sites but generated at the nonmagnetic sites. The optical characteristics were explained by in-depth analyses of the polarization, plasmonic resonance, transparency, and other features in terms of the computed parameters.
机译:在这项研究中,我们采用了使用Wien2K码的密度泛函理论(DFT)方法研究PBCro3和PBFeO3钙酸盐在立方和四方相中的磁性和光学行为。 我们在形成的形成,半金属行为和自旋极化方面确定了铁磁状态的稳定性。 铁磁状态的起源和性质归因于约翰柜员的失真和超交换机制。 计算水晶场的比较,约翰特尔畸变和交换能量表示铁磁性的稳定性。 由于杂交强,在Cr / Fe位点降低了磁矩,但在非磁性位点产生。 通过深入分析计算参数,通过深入分析光学特征来解释光学特性。

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