Ahmed G, Dashora Alpa, Sharma M, Ahuja B L
Department of Physics, University College of Science, M.L. Sukhadia University, Udaipur, 313001 Rajasthan, India.
Appl Radiat Isot. 2010 Feb;68(2):286-92. doi: 10.1016/j.apradiso.2009.11.028. Epub 2009 Dec 1.
In this paper, we present the first-ever experimental Compton line shapes of HgBr(2) and HgI(2) using (137)Cs Compton spectrometer. To compare our experimental momentum densities, we have computed the Compton profiles using Hartree-Fock and density functional theory within linear combination of atomic orbitals. We have also computed the energy bands and density of states using the linear combination of atomic orbitals and full potential linearized augmented plane wave method. On the basis of equal-valence-electron-density profiles, it is seen that HgI(2) is more covalent than HgBr(2) which is in agreement with the valence charge densities. The experimental isotropic profiles are found to be relatively in better agreement with the Hartree-Fock data. We have also discussed the photoluminescence and detection properties of both the halides.
在本文中,我们首次使用¹³⁷Cs康普顿光谱仪给出了HgBr₂和HgI₂的实验康普顿线形。为了比较我们的实验动量密度,我们利用原子轨道线性组合内的哈特里 - 福克方法和密度泛函理论计算了康普顿轮廓。我们还使用原子轨道线性组合和全势线性缀加平面波方法计算了能带和态密度。基于等价位电子密度分布,发现HgI₂比HgBr₂具有更强的共价性,这与价电荷密度一致。实验各向同性轮廓与哈特里 - 福克数据的吻合度相对更好。我们还讨论了这两种卤化物的光致发光和探测特性。