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The energy levels, binding energy and third harmonic generation of a hexagon-shaped quantum wire

机译:六角形量子线的能级,结合能和三次谐波产生

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In this paper, we have studied the effect of impurity on the energy levels and nonlinear optical properties of a hexagon-shaped quantum wire using finite element method (FEM). We have obtained the energy eigenvalues, their corresponding eigenfunctions and third harmonic generation (THG) with and without impurity for different sizes of inner a(1) and outer a(2) hexagons. It is found that all energy levels are decreased with increasing a(1). There is degeneracy between energy levels without impurity. But, there is no degeneracy between the energy levels in the presence of impurity. The dipole matrix elements are increased with enhancing hexagon sizes without impurity. But, these elements have complex behaviors with impurity. The THG increases and shifts toward lower energies by enhancing a(1). The influence of a(2)/a(1) on THG is not large when a(2)/a(1) > 2. The THG shifts toward lower energies by increasing impurity position.
机译:在本文中,我们使用有限元方法(FEM)研究了杂质对六角形量子线的能级和非线性光学性质的影响。对于不同大小的内部a(1)和外部a(2)六边形,我们获得了能量本征值,它们相应的本征函数和三次谐波生成(THG)(有无杂质)。发现所有能级都随着a(1)的增加而降低。没有杂质的能级之间存在简并性。但是,在存在杂质的情况下,能级之间没有退化。偶极矩阵元素随着无杂质的六边形尺寸增加而增加。但是,这些元素具有复杂的杂质行为。 THG增大并通过增强a(1)移向较低的能量。当a(2)/ a(1)> 2时,a(2)/ a(1)对THG的影响不大。通过增加杂质位置,THG向较低的能量移动。

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