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Calculation of Zeeman splitting and Zeeman transition energies of spherical quantum dot in uniform magnetic field

机译:均匀磁场中球形量子点的塞曼分裂和塞曼跃迁能的计算

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In this study we report a detailed theoretical investigation of the effect of an external magnetic field on the 1s-, 2p-, 3d- and 4f-energy states of a spherical quantum dot. We treat the contribution of the diamagnetic term as a perturbation and discuss the effect of the diamagnetic term on the 1s-, 2p-, 3d- and 4f-energy states. We also have calculated the Zeeman transition energies between 2p -> 1s and 3d -> 2p states with m = 0, +/- 1 and 0, +/- 1, +/- 2 as a function of dot radius and the magnetic field strength. The results show that the magnetic field, impurity charge and dot radius have a strong influence on the energy states and the Zeeman transitions. It is found that the energies of the electronic states with m < 0 addition of the diamagnetic term firstly decrease toward a minimum, and then increase with the increasing magnetic field strength. We have seen that as magnetic field intensity is adjusted, frequency of the emitted light can be changed for Zeeman transitions. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们报告了一个外部磁场对球形量子点的1s,2p,3d和4f能态的影响的详细理论研究。我们将反磁性项的贡献视为微扰,并讨论了反磁性项对1s,2p,3d和4f能量状态的影响。我们还计算了2p-> 1s和3d-> 2p状态之间的塞曼跃迁能,其中m = 0,+ /-1和0,+ /-1,+ /-2是点半径和磁场的函数强度。结果表明,磁场,杂质电荷和点半径对能态和塞曼跃迁有很大的影响。已经发现,反磁项加m <0的电子态的能量首先减小到最小值,然后随着磁场强度的增加而增加。我们已经看到,随着磁场强度的调整,可以针对塞曼跃迁改变发射光的频率。 (C)2016 Elsevier B.V.保留所有权利。

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