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ELECTRONIC SURFACE STATES AND MINIBAND STRUCTURE OF SUPERLATTICES WITH MULTIPLE LAYERS PER PERIOD

机译:周期多层多层超晶格的电子表面态和最小能级结构

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The electronic structure of a semi-infinite complex-basis superlattice (SL) with N layers per period is investigated, with emphasis placed on the effect of the SL surface (i.e., the SL/substrate interface). The bulk dispersion relation as well as the energy expression and existence condition for surface states are derived using the transfer-matrix method within an envelope-function approximation. Some common properties of a symmetric termination of the SL potential (i.e., when the substrate is identical to the last layer of the SL basis) are discussed and it is shown that-contrary to binary SL's-surface states can appear in complex-basis SL's also without perturbing the SL potential at the surface. These general results are illustrated by application to GaAs/AlxGa1-xAs SL's with four-layer (two-well and two-barrier) bases. [References: 33]
机译:研究了每周期N层的半无限复基超晶格(SL)的电子结构,重点放在了SL表面(即SL /基板界面)的影响上。在包络函数近似内,使用转移矩阵法推导了体分散关系以及表面状态的能量表达和存在条件。讨论了SL电位对称终止的一些常见属性(即,当衬底与SL基础的最后一层相同时),并且显示出与二元SL的表面状态相反,可以在复基SL中出现也不会干扰表面的SL电位。这些一般结果可通过应用于具有四层(两阱和两势垒)基础的GaAs / AlxGa1-xAs SL来说明。 [参考:33]

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