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FP-LAPW study of energy bands and optical properties of the filled skutterudite CeRu4As12 with spin-orbit coupling

机译:FP-LAPW自旋轨道耦合填充方钴矿CeRu4As12的能带和光学性质的研究

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The density functional theory (DFT)-based fully relativistic version of the full-potential linearized augmented plane wave method with spin-orbit coupling (SOC) has been used to study the electronic and optical properties of the filled skutterudite . The exchange and correlation potential has been treated with the local density approximation (LDA). The analysis of the density of states and energy bands in the vicinity of the Fermi energy level suggests the semiconducting nature of the material with narrow indirect energy band gap of 0.11 eV; however, the gap value increases to 0.17 eV for without SOC calculation. Additionally, the modified Becke-Johnson (mBJ) potential has been utilized along with the LDA approach to estimate the precise value of the energy band gap of the material. The mBJ treatment enhances the energy band gap to -0.2 eV. In order to understand the structural and mechanical properties of the sample material, the elastic constants are also estimated at ambient conditions. The analysis of the elastic constants suggests the brittle nature of the material whose stiffness is comparable with that of and the covalent contribution is expected in the bonding. The optical response of the material has been studied from the energy bands, which reflects the metallic behavior of the material in the infrared region of frequency radiation and turns to act as opaque material with superluminal behavior at ultraviolet frequency radiation. The inclusion of the hybrid functional in the calculation suggests the metallic nature of the material.
机译:基于密度泛函理论(DFT)的完全相对论的带自旋轨道耦合(SOC)的全能线性化增强平面波方法已被用于研究填充方钴矿的电子和光学性质。交换和相关势已用局部密度近似(LDA)处理。对费米能级附近的状态和能带密度的分析表明,材料的半导体性质具有0.11 eV的窄间接能带隙。但是,如果不进行SOC计算,间隙值将增加到0.17 eV。此外,改良的Becke-Johnson(mBJ)电势已与LDA方法一起使用,以估算材料能带隙的精确值。 mBJ处理将能带隙提高到-0.2 eV。为了了解样品材料的结构和机械性能,还应在环境条件下估算弹性常数。弹性常数的分析表明材料的脆性,其刚度可与材料的刚度相媲美,并且有望在键合过程中产生共价作用。已经从能带研究了材料的光学响应,该能带反映了材料在频率辐射的红外区域中的金属行为,并变成了在紫外线频率辐射下具有超光速行为的不透明材料。计算中包含混合功能表明材料的金属性质。

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