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Many particle approach to excitons in crystals: Electron-electron and electron-phonon interactions

机译:晶体中激子的许多粒子方法:电子-电子和电子-声子相互作用

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摘要

A many particle system of electrons interacting one with another and also with the crystal lattice vibrations was studied theoretically. The particular diagonalization of the Hamiltonian was fulfilled and it was shown that the structure of bands (exciton structure) in the absorption spectra of the crystal is really the set of electron-phonon maxima. Numerical calculations showed also that full electron bands, valence and conductivity, are responsible for the formation of exciton maxima and even states located far from the edge of zones have significant effect on the occurrence of exciton peaks - which is in disagreement with the effective mass approximation (EMA). The results are compared with known experimental data for wide band ZnO and CdS crystals.
机译:从理论上研究了电子相互影响以及与晶格振动相互作用的许多粒子系统。满足了哈密顿量的特定对角化,并且表明晶体吸收光谱中的能带结构(激子结构)实际上是电子声子最大值的集合。数值计算还表明,完整的电子能带,化合价和电导率是激子最大值的形成原因,甚至位于远离区域边缘的状态也对激子峰的出现有重大影响-这与有效的质量近似不一致。 (EMA)。将结果与宽带ZnO和CdS晶体的已知实验数据进行比较。

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