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Free polaron energy levels in AlyGa1-yN/AlxGa1-xN triangle quantum well structures

机译:ALYGA1-YN / ALXGA1-XN三角量子井结构中的免费PIARON能量水平

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In this work, a variational method is used to examine the problems relevant to the free polaron energy spectrum in a wurtzite AlyGa1-yN/AlxGa1-xN triangle quantum well structure. The numerical calculations for the ground state energy, transition energy and polaron energy shifts as the functions of well-width d and composition x are carried out by considering the anisotropies of the parameters, such as the optical phonon frequency, dielectric constant and electron effective mass, as well as their observed changes with coordinate z in this system. The research results show that the polaron energy shift caused by the electron optical phonon interaction is large, and leads to an obvious energy decrease in the AlyGa1-yN/AlxGa1-xN triangular quantum well structure. The contribution of the confined phonon is found to increase with the increasing of the well-width and composition x, while that of the half space phonon is observed to decrease with the increasing of the well-width and composition x. The total contribution of the phonon increases with the increasing composition x, while a minimum is found to occur to the total contribution of the phonon during the decreasing process with the well-width. As the d increases, the free polaron energies and transition energies decrease. Meanwhile, with the increasing of the composition x, the energy and transition energy are found to be increased. In the AlyGa1-yN/AlxGa1-xN triangular quantum well structure, the trends of the free polaron energy, transition energy and polaron energy shifts with the well-width and composition x are found to be similar to those in the GaN/AlxGa1-xN square quantum well structure. However, the corresponding values in the triangular quantum well structure are obviously greater than those in the square quantum well structure.
机译:在这项工作中,改变方法用于检查Wurtzite ALYGA1-YN / ALXGA1-XN三角形阱结构中的自由偏振子能谱相关的问题。通过考虑参数的各向异性,例如光学声子频率,介电常数和电子有效质量,通过考虑到宽度D和组合物X的良好宽度D和组合物X的功能的基位能量,过渡能量和偏振子能量变换的数值计算。以及在该系统中使用坐标z的观察到的变化。研究结果表明,由电子光学声子相互作用引起的极化电能变换大,并导致ALYGA1-YN / ALXGA1-XN三角量子阱结构中的明显能量降低。发现限位声子的贡献随着宽度和组合物x的增加而增加,而半空间声子的增加随着井宽和组合物x的增加而降低。声子的总贡献随着增加的组成x而增加,而在宽度宽度下降过程中,发现最小值在降低过程中发生了最小贡献。随着D的增加,自由沉降子能量和转变能量降低。同时,随着组合物X的增加,发现能量和过渡能量增加。在ALYGA1-YN / ALXGA1-XN三角形量子阱结构中,发现具有孔宽度和组合物X的自由优势,过渡能量和极化能量偏移的趋势与GaN / Alxga1-Xn中的趋势相似方形量子阱结构。然而,三角形量子阱结构中的相应值明显大于方形量子阱结构中的值。

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