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Energy levels and transition frequency of strong-coupling polaron in a Gaussian quantum dot

机译:高斯量子点中强耦合极化子的能级和跃迁频率

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In the present work, the energy levels and transition frequency between relevant levels of the strong-coupling polaron in a Gaussian quantum dot is studied. In this regard, we have used the well known Lee–Low–Pines unitary transformation method and the Pekar type variational procedure. We show the effect of the effective confinement length and electron–phonon (e–p) coupling strength on energy levels and the transition frequency. According to the results, it is found that the energy levels are decreased with increasing the e–p coupling strength. Also, the transition frequency is increased with enhancing the e–p coupling strength. The energy levels and transition frequency are increased with decreasing the effective confinement lengths.
机译:在目前的工作中,研究了高斯量子点中强耦合极化子的能级和相关能级之间的跃迁频率。在这方面,我们使用了众所周知的Lee–Low–Pines一元变换方法和Pekar类型变分程序。我们显示了有效限制长度和电子-声子(e-p)耦合强度对能级和跃迁频率的影响。根据结果​​,发现能量水平随着e-p耦合强度的增加而降低。同样,过渡频率随着e-p耦合强度的增加而增加。能量水平和跃迁频率随着有效约束长度的减小而增加。

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