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Phonons and Electrons in Chalcopyrite Semiconductors

机译:色氨酸半导体的声子和电子

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In recent years the phonons and the electron phonon interaction of binary tetrahedral semiconductors have been profusely investigated by ab initio techniques and compared with experimental results. Of particular interest have been binary compounds in which the cations contain semi-core d-electrons (CuCl, CuI, AgI) which display anomalies related to the semicore d-states (~(3d)CuCl, ~(4d)AgI). Here we present the corresponding data and anomalies which have been observed in ternary compounds of chalcopyrite structure (e.g. CuGaS_2, AgGaX_2 (X = S, Se, Te)). We present new ab initio calculations of the phonon dispersion relations of AgGaS_2 and compare them with available Raman and IR data. Anomalies in the temperature dependence of the electronic gaps, which have been found in the binary chalcogenides, are also hinted at by the results for the ternary compounds with chalcopyrite structure. In view of the large number of atomic combinations possible for these materials (AgGaS_2, AgGaSe_2, CuGaTe_2, …) we believe that a detailed investigation of the whole family of chalcopyrites should provide a clear picture of their properties and lattice anomalies.
机译:近年来,通过AB初始技术和实验结果比较了二进制四面体半导体的声子和二元四面体半导体的相互作用。特别令人兴趣的是二元化合物,其中阳离子含有半核D-电子(CuCl,Cui,Agi),其显示与半导体D-态(〜(3D)CuCl,〜(4D)AGI)相关的异常。在这里,我们介绍了在黄铜矿结构的三元化合物中观察到的相应数据和异常(例如Cugas_2,Aggax_2(X = S,SE,TE))。我们提出了AGGAS_2的声子色散关系的新AB Initio计算,并将其与可用的拉曼和IR数据进行比较。在二元硫芥子生成剂中发现的电子间隙的温度依赖性的异常也被用硫代铜矿结构的三元化合物的结果暗示。鉴于这些材料可能的大量原子组合(Aggas_2,Aggase_2,Cugate_2,...)我们认为,整个核黄素的详细调查应提供清晰的特性和格子异常的图片。

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