首页> 外文期刊>International journal of nanoscience >EFFECTS OF ANISOTROPIC PARABOLIC POTENTIAL ON THE ENERGY LEVELS AND TRANSITION FREQUENCY OF STRONG-COUPLING POLARON IN A QUANTUM DOT
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EFFECTS OF ANISOTROPIC PARABOLIC POTENTIAL ON THE ENERGY LEVELS AND TRANSITION FREQUENCY OF STRONG-COUPLING POLARON IN A QUANTUM DOT

机译:各向异性抛物线电位对量子点中强耦合极化子的能级和跃迁频率的影响

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摘要

In the presence of a three-dimensional anisotropic parabolic potential (APP), the energy levels and the transition frequency between relevant levels of the strong-coupling polaron in a quantum dot (QD) are investigated by using the well-known Lee-Low-Pines (LLP) unitary transformation method and the Pekar type variational (PTV) method. The relations of the energy levels and the transition frequency with the electron-phonon (EP) coupling strength and the effective confinement lengths are derived. Numerical calculations show that the energy levels are decreasing functions of the EP coupling strength, whereas the transition frequency is an increasing one of it. And they are all increasing rapidly with decreasing the effective con- finement lengths in different directions, which are showing the novel quantum size confining effect of the QD.
机译:在存在三维各向异性抛物线电势(APP)的情况下,通过使用著名的Lee-Low-Low量子点(QD)研究了能级和量子点(QD)中强耦合极化子的相关能级之间的跃迁频率。 Pines(LLP))变换方法和Pekar类型变分(PTV)方法。推导了能级和跃迁频率与电子-声子(EP)耦合强度和有效约束长度的关系。数值计算表明,能级是EP耦合强度的下降函数,而跃迁频率是其中之一。并且它们都随着在不同方向上减小有效约束长度而迅速增加,这表明了量子点的新型量子尺寸约束效应。

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