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首页> 外文期刊>International Journal of Quantum Chemistry >Magnetic Interactions and Electronic Structure of Uvarovite and Andradite Garnets. An Ab Initio All-Electron Simulation With the CRYSTAL06 Program
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Magnetic Interactions and Electronic Structure of Uvarovite and Andradite Garnets. An Ab Initio All-Electron Simulation With the CRYSTAL06 Program

机译:铀辉石和红宝石石榴石的电磁相互作用和电子结构。使用CRYSTAL06程序进行从头算起的全电子仿真

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摘要

The ground-state electronic structure of a number of magnetic phases of the garnets andradite (Ca3Fe2Si3O12) and uvarovite (Ca3Cr2Si3O12) has been investigated at the density functional theory level of approximation using the periodic ab initio code CRYSTAL. An all-electron Gaussian-type basis has been used in conjunction with the B3LYP hybrid functional. The exchange coupling constants between the first (J1a and J1b differentiating the two nonidentical sites), second (J2), and third (J3) nearest neighbors have been evaluated and are found to be in good agreement with the experimental data that is available for andradite. As a consequence of both the different J1a to J1b ratio and the opposite sign of J2 in the two minerals, different antiferromagnetic (AF) ground states are found for uvarovite and andradite, which is in agreement with experimental observation. Strong support for the additivity and transferability of the J constants is provided by calculations in which Cr and Fe ions are embedded in the related grossular structure. The mechanism for the stabilization of the AF states is discussed within the Anderson theory of superexchange; the kinetic energy gain in the AF states is calculated, and the spin density maps and profiles are examined. Density of states, charge density maps, and Mulliken population data complete the analysis of the electronic structure.
机译:石榴石和辐射(Ca3Fe2Si3O12)和微晶石(Ca3Cr2Si3O12)的多个磁相的基态电子结构已使用周期性从头算式CRYSTAL在近似的密度泛函理论水平进行了研究。全电子高斯型基础已经与B3LYP杂合功能结合使用。已评估了第一个(J1a和J1b区分两个不同的位点),第二个(J2)和第三个(J3)最接近的邻居之间的交换耦合常数,发现它们与可用于辐射的实验数据高度吻合。由于两种矿物中J1a与J1b的比率不同以及J2的符号相反,因此,对于铀金铁矿和铝土矿,发现了不同的反铁磁(AF)基态,这与实验观察一致。通过计算将Cr和Fe离子嵌入相关的总体结构中,为J常数的可加性和可传递性提供了有力的支持。在安德森超交换理论中讨论了稳定AF状态的机制。计算AF状态下的动能增益,并检查自旋密度图和分布图。状态密度,电荷密度图和Mulliken总体数据完成了对电子结构的分析。

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