首页> 外文会议>CODEC 2012;International Conference on Computers and Devices for Communication >Numerical Computation of Eigenenergy and Intersubband Transition Energy of GaAs Triangular Nanowire Embedded in AlxGai_xAs Rectangular Wire
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Numerical Computation of Eigenenergy and Intersubband Transition Energy of GaAs Triangular Nanowire Embedded in AlxGai_xAs Rectangular Wire

机译:Alxgai_xas矩形丝嵌入GaAs三角形纳米线的特征和三角形过渡能量的数值计算

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Energy eigenvalues and intersubband transition energies of a triangular quantum wire have been numerically computed by solving time-independent Schrodinger's equation with appropriate boundary conditions using finite difference technique for the lowest three eigenstates. Triangular wire is made of GaAs material, which is embedded in a rectangular wire of Al_xGa_(1-x)As. Composition of Al_xGa_(1-x)As is varied to study energy profile and intersubband transition energies of the wire. Dimensional effect is also studied by varying width and height of the triangular wire. The study is carried out taking into consideration conduction band discontinuity and effective mass mismatch at boundaries. Fine optical tuning for quantum wire laser is possible through proper selection of material composition and dimension of the wire.
机译:通过利用适当的边界条件,使用有限差分技术为最低三个特征符合用于最低三个特征的有限差分技术,在数值计算三角形量子的能量特征值和三角形电线的转换能量。 三角形线由GaAs材料制成,嵌入Al_xga_(1-x)的矩形线中。 AL_XGA_(1-X)的组成,如研究能量曲线和线的基间转换能量。 还通过不同的三角形线的宽度和高度来研究尺寸效应。 在界限的考虑导电带不连续性和有效的质量不匹配中进行了该研究。

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