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Electronic and optical properties of CaCl2 using Compton scattering and density functional theory

机译:CaCl2的电子和光学性质使用康普顿散射和密度泛函理论

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In this paper electron momentum density of CaCl2 using Am-241 Compton spectrometer is reported. The experimental Compton profile is compared with the corresponding theoretical profiles, computed using different exchange and correlation potentials within linear combination of atomic orbitals (LCAO) scheme. The hybrid WC1LYP approximation within LCAO scheme shows a better agreement with experimental CP than other reported theoretical profiles. Going beyond Compton line shapes, the energy bands, density of states using LCAO scheme and modified Becke-Johnson (mBJ) potential within full potential linearized augmented plane wave (FP-LAPW) method are also reported. The optical properties like, dielectric tensors, absorption spectra, reflectivity and refraction are also discussed using FP-LAPW method. Energy band gaps computed using LCAO-WC1LYP and FP-LAPW-mBJ methods are found to be 6.89 and 6.76 eV, respectively which are in reasonable agreement with the available experimental data.
机译:在本文中,报道了使用AM-241 Copton光谱仪的CaCl2的电子动量密度。 将实验康普顿轮廓与相应的理论谱进行比较,使用不同的交换和相关电位计算的原子轨道(LcaO)方案的线性组合内的相关电位计算。 LCAO方案中的混合WC1Lyp近似表现出与实验CP更好的协议,而不是其他报告的理论谱。 还报道了超越康普顿线形状,能源带,使用LCAO方案的状态密度和全潜能线性化增强平面波(FP-LAPW)的改进的BECKE-JOWNON(MBJ)电位。 使用FP-LAPW方法还讨论了光学特性,介电张量,吸收光谱,反射率和折射。 使用LCAO-WC1LYP和FP-LAPW-MBJ方法计算的能带隙分别为6.89和6.76eV,分别与可用的实验数据合理一致。

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