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The Effects of Hydrogen-Like Impurity and Temperature on State Energies and Transition Frequency of Strong-Coupling Bound Polaron in an Asymmetric Gaussian Potential Quantum Well

机译:氢气样杂质和温度对不对称高斯电位量子井强度耦合极性谐振的状态能量和过渡频率的影响

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摘要

In the present work, we study the ground state energy, the first excited state energy and the transition frequency (TF) between the two states of the strong-coupling impurity bound polaron in an asymmetric Gaussian potential quantum well (AGPQW) by using the variational method of the Pekar type. By employing quantum statistics theory, the temperature effect on the state energies (SEs) and the TF are also calculated with a hydrogen-like impurity at the coordinate origin of the AGPQW. According to the obtained results, we found that the SEs and the TF are increasing functions of the temperature, whereas they are decreasing ones of the Coulombic impurity potential.
机译:在本作工作中,我们通过使用变分在不对称高斯电位量子阱(AGPQW)中的强耦合杂质结合的两种状态之间的地位能量,第一激发状态能量和过渡频率(TF)。通过使用变分 Pekar类型的方法。 通过采用量子统计理论,还通过在AGPQW的坐标起源的氢样杂质下计算对状态能量(SES)和TF的温度效应。 根据所得的结果,我们发现SES和TF正在增加温度的函数,而它们是减少库仑杂质潜力的函数。

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