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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Electronic structure of a spherical quantum dot: Effects of the Kratzer potential, hydrogenic impurity, external electric and magnetic fields
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Electronic structure of a spherical quantum dot: Effects of the Kratzer potential, hydrogenic impurity, external electric and magnetic fields

机译:球形量子点的电子结构:Kratzer势,氢杂质,外部电场和磁场的影响

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In the present work, we have investigated the simultaneous effects of external electric and magnetic fields on the energy spectrum of an electron bound to an impurity confined in a spherical quantum dot with Kratzer potential. To this end, energy eigenvalues are obtained using the asymptotic iteration method. The energy dependencies upon the confinement potential and external fields are reported. Our results indicate that the confinement potential, external electric and magnetic fields have a great influence on the energy eigenvalues of the system. We found that, an increase in the magnetic field increases the energy eigenvalues of the states with positive magnetic quantum number, While, the states with negative m decrease, reaching to their minimum values and increase again, with increasing the magnetic field. Moreover, an increase in electric field strength leads to decrease the confinement effects and energy eigenvalues of the system. (C) 2016 Elsevier B.V. All rights reserved.
机译:在目前的工作中,我们已经研究了外部电场和磁场对电子束缚在带Kratzer势的球形量子点中所含杂质的电子能谱的同时影响。为此,使用渐近迭代法获得能量特征值。报告了能量与限制势和外部场的关系。我们的结果表明,限制势,外部电场和磁场对系统的能量本征值有很大的影响。我们发现,磁场的增加会增加具有正磁性量子数的状态的能量本征值,而具有负m的状态会减少,达到其最小值,然后随着磁场的增加而再次增加。此外,电场强度的增加导致系统的约束效应和能量本征值减小。 (C)2016 Elsevier B.V.保留所有权利。

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