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Binding Energy and Spin-Orbit Splitting of a Hydrogenic Donor Impurity in AlGaN/GaN Triangle-Shaped Potential Quantum Well

机译:AlGaN / GaN三角形电势量子阱中氢供体杂质的结合能和自旋轨道分裂

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摘要

In the framework of effective-mass envelope function theory, including the effect of Rashba spin-orbit coupling, the binding energyEband spin-orbit split energy Г of the ground state of a hydrogenic donor impurity in AlGaN/GaN triangle-shaped potential heterointerface are calculated. We find that with the electric field of the heterojunction increasing, (1) the effective width of quantum well decreases and (2) the binding energy increases monotonously, and in the mean time, (3) the spin-orbit split energy Г decreases drastically. (4) The maximum of Г is 1.22 meV when the electric field of heterointerface is 1 MV/cm.
机译:在有效质量包络函数理论的框架内,包括Rashba自旋轨道耦合的影响,计算了AlGaN / GaN三角形势能异质界面中氢供体杂质基态的结合能Eband自旋轨道分裂能Г 。我们发现随着异质结电场的增加,(1)量子阱的有效宽度减小,(2)结合能单调增加,同时,(3)自旋轨道分裂能Г急剧减小。 (4)当异质界面电场为1 MV / cm时,Г的最大值为1.22 meV。

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