首页> 外文期刊>The European physical journal, B. Condensed matter physics >Coupled influence of damped propagation of dopant and oscillatory confinement sources on excitation kinetics of doped quantum dot
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Coupled influence of damped propagation of dopant and oscillatory confinement sources on excitation kinetics of doped quantum dot

机译:掺杂物和振动约束源的阻尼传播对掺杂量子点激发动力学的耦合影响

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摘要

We investigate the excitation kinetics of a repulsive impurity doped quantum dot initiated by oscillations of various confinement sources. The dopant is considered to be propagating under damped condition. For simplicity, we have considered an inherently linear motion of the dopant and the impurity potential has been assumed to have a Gaussian nature. The damping strength and the oscillation frequencies of dot confinement sources of electric and magnetic origin have been found to fabricate the said kinetics in a delicate way. The present study sheds light on how the individual or combined oscillations of different confinement sources could design the excitation kinetics in presence of damping.
机译:我们研究了由各种限制源的振荡引发的排斥性掺杂杂质的量子点的激发动力学。认为该掺杂剂在阻尼条件下正在传播。为简单起见,我们考虑了掺杂剂的固有线性运动,并且已假定杂质势具有高斯性质。已经发现,电和磁源的点限制源的阻尼强度和振荡频率以微妙的方式制造了所述动力学。本研究揭示了在存在阻尼的情况下,不同约束源的单个或组合振动如何设计激励动力学。

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