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Temperature, impurity and electromagnetic field effects on the transition of a two-level system in a triangular potential

机译:温度,杂质和电磁场对三角势中两能级系统跃迁的影响

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摘要

Using the Pekar variational method, the effects of the temperature, impurity and electromagnetic fields on the transition are investigated through the eigenenergies of the ground and first-excited states of the polaron in a triangular potential quantum dot. Those parameters are essential for the transition of the polaron from the ground state to the first-excited state. This quantum system in nanostructure can be employed as a two-level quantum qubit. The numerical result shows the weak evolution of the probability density with the electron-phonon coupling constant, the cyclotron frequency and the Coulombic potential. It is also noted that this probability increased with the confinement length and electric-field strength. The tunneling of temperature leads to the amplification of the probability density.
机译:使用Pekar变分方法,通过三角势量子点中极化子的基态和第一激发态的本征能,研究了温度,杂质和电磁场对跃迁的影响。这些参数对于极化子从基态到第一激发态的转变至关重要。纳米结构中的该量子系统可以用作两级量子量子位。数值结果表明,概率密度随电子-声子耦合常数,回旋加速器频率和库仑势的变化较弱。还应注意,这种可能性随着限制长度和电场强度的增加而增加。温度的隧穿导致概率密度的增大。

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