Effect of Electron-impurity Interaction on the Optical Absorption in A Quasi-one-dimensional Electron System

Tran Cong Phong, N. T. Linh, N. T. Nam, N. Hieu
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Abstract

In this work, we investigated the optical absorption in a quasi-one-dimensional system subjected to an external electromagnetic wave. The optical absorption coefficient was calculated by using the perturbation theory taking account of the effect of the electron - impurity interaction. The numerical result for the GaAs/AlAs cylindrical semiconductor quantum wire showed the presence of the resonant absorption peaks. The full width at half maximum (FWHM) decreased with increasing the wire radius and increases with increasing temperature. In particular, in the limit of large wire radius, the contribution of transitions between electronic subbands to the absorption spectrum becomes identical, t meaning that the system tends to behave as a bulk (there-dimensional) system when the confinement length is large. The obtained results are of significance for further studies and applications of the low dimensional systems in nano-optoelectronic devices.
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准一维电子系统中电子-杂质相互作用对光吸收的影响
本文研究了准一维系统在外加电磁波作用下的光吸收。考虑到电子与杂质相互作用的影响,利用微扰理论计算了光吸收系数。对GaAs/AlAs圆柱形半导体量子线的数值计算结果表明,谐振吸收峰的存在。半最大全宽度(FWHM)随线材半径的增大而减小,随温度的升高而增大。特别是,在较大导线半径的限制下,电子子带之间的跃迁对吸收光谱的贡献是相同的,这意味着当约束长度较大时,系统倾向于表现为体(三维)系统。所得结果对低维系统在纳米光电器件中的进一步研究和应用具有重要意义。
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