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首页> 外文期刊>Superlattices and microstructures >Harmonic generations in a lens-shaped GaAs quantum dot: Dresselhaus and Rashba spin-orbit couplings under electric and magnetic fields
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Harmonic generations in a lens-shaped GaAs quantum dot: Dresselhaus and Rashba spin-orbit couplings under electric and magnetic fields

机译:透镜形状的GaAs量子点中的谐波世代:电场和磁场下的Dresselhaus和Rashba自旋轨道耦合

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摘要

In this work, effects of external electric and magnetic fields in the presence of both Rashba and Dresselhaus spin-orbit couplings on the second and third harmonic generations (SHG and THG) of a lens-shaped GaAs quantum dot are studied. Energy eigenvalues and ei-genvectors are calculated numerically and optical properties are obtained using the compact density matrix approach. Our results reveal that, an increase in the magnetic field, leads to both red and blue shifts in resonant peaks of both SHG and THG. On the other hand, augmentation of electric field leads to blue shift in all resonant peaks except the first peak related to lowest transition. Also the dipole moment matrix elements increase by enhancing both electric and magnetic fields. Finally the effect of dot size is studied and results illustrate that increment in size reduces the transition energies except the lowest one and thus leads to red shift in resonant peaks while the first peak remains constant.
机译:在这项工作中,研究了在存在Rashba和Dresselhaus自旋轨道耦合的情况下外部电场和磁场对透镜形GaAs量子点的第二和第三谐波产生(SHG和THG)的影响。数值计算能量特征值和特征向量,并使用紧凑密度矩阵方法获得光学特性。我们的结果表明,磁场的增加会导致SHG和THG的共振峰出现红移和蓝移。另一方面,电场的增强导致除与最低跃迁有关的第一个峰以外的所有谐振峰的蓝移。偶极矩矩阵元素也通过增强电场和磁场而增加。最后,研究了点尺寸的影响,结果表明,尺寸增加会降低除最低能量以外的跃迁能量,从而导致共振峰出现红移,而第一个峰保持恒定。

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