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Effects of the parabolic potential and confined phonons on the polaron in a quantum wire

机译:抛物线势和约束声子对量子线中极化子的影响

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摘要

By using the Lee, Low, and Pines variational method, we have studied the electron-confined phonon interaction within a rectangular quantum wire under an additional parabolic potential. Formulas for the polaron self-energy, the electron effective mass along the wire, and the ground-state energy are derived. Numerical calculations are performed for a typical GaAs quantum wire within the mesoscopic size using the idea of Fourier decomposition of the wave function. In comparison with previous calculations, our results show that the effect of phonon confinement always reduces the magnitude of the electron-phonon interaction and the associated physical quantities, whereas the additional parabolic potential tends to enhance not only this interaction but also the ground-state energy.
机译:通过使用Lee,Low和Pines变分方法,我们研究了在附加抛物线电势下矩形量子线内的电子约束声子相互作用。推导出极化子自能量,沿导线的电子有效质量和基态能量的公式。使用波函数的傅立叶分解的思想,对介观尺寸内的典型GaAs量子线进行了数值计算。与以前的计算相比,我们的结果表明,声子约束的作用总是会减小电子-声子相互作用的强度以及相关的物理量,而附加的抛物线势不仅会增强这种相互作用,还会增强基态能量。

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