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首页> 外文期刊>The journal of physics and chemistry of solids >Theoretical investigation of structural, electronic and optical properties of MgxBa1-xS, MgxBa1-xSe and MgxBa1-xTe ternary alloys using DFT based FP-LAPW approach
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Theoretical investigation of structural, electronic and optical properties of MgxBa1-xS, MgxBa1-xSe and MgxBa1-xTe ternary alloys using DFT based FP-LAPW approach

机译:MGXBA1-XS,MGXBA1-XSE和MGXBA1-XTE三元合金结构,电子和光学性质的理论研究,使用DFT基于基于DFT的FP-LAPW方法

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Density functional theory (DFT) based full-potential linearized augmented plane wave (FP-LAPW) methodology has been employed to investigate theoretically the structural, electronic and optical properties of MgxBa1-xS, MgxBa1-xSe and MgxBa1-xTe ternary alloys for 0 <= x <= 1 in their rock-salt (B1) crystallographic phase. The exchange-correlation potentials for the structural properties have been computed using the Wu-Cohen generalized -gradient approximation (WC-GGA) scheme, while those for the electronic and optical properties have been computed using both the WC-GGA and the recently developed Tran-Blaha modified Becke-Johnson (TB-mBJ) schemes. The thermodynamic stability of all the ternary alloys have been investigated by calculating their respective enthalpy of formation. The atomic and orbital origin of different electronic states in the band structure of the compounds have been identified from the respective density of states (DOS). Using the approach of Zunger and co-workers, the microscopic origin of band gap bowing has been discussed in term of volume deformation, charge exchange and structural relaxation. Bonding characteristics among the constituent atoms of each of the specimens have been discussed from their charge density contour plots. Optical properties of the binary compounds and ternary alloys have been investigated theoretically in terms of their respective dielectric function, refractive index, normal incidence reflectivity and optical conductivity. Several calculated results have been compared with available experimental and other theoretical data.
机译:基于密度的功能理论(DFT)的全电位线性化增强平面波(FP-LAPW)方法已经采用了理论上研究MGXBA1-XS,MGXBA1-XSE和MGXBA1-XTE三元合金的结构,电子和光学性能为0 < = x <= 1在它们的岩盐(B1)晶体相中。已经使用Wu-Cohen广义 - 映射近似(WC-GGA)方案计算了结构特性的交换相关电位,而使用WC-GGA和最近开发的TRAN来计算用于电子和光学特性的那些-Blaha修改了Becke-Johnson(TB-MBJ)计划。通过计算其各自的形成焓来研究所有三元合金的热力学稳定性。从各种状态(DOS)的相应密度鉴定了化合物的带状结构中不同电子状态的原子和轨道起源。使用Zunger和Co-Workers的方法,在体积变形,电荷交换和结构松弛期间讨论了带隙弯曲的显微介质。已经从其电荷密度等高图讨论了每个样本的组成原子中的粘合特性。在理论上,在其各自的介电函数,折射率,正常入射反射率和光学传导性方面已经研究了二元化合物和三元合金的光学性质。将几个计算结果与可用的实验和其他理论数据进行了比较。

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