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Quantum-confined and pseudo Stark effects in the semiconductor conical quantum dot

机译:量子限制和伪迹象在半导体锥形量子点中的效果

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Electronic states in a GaAs conical quantum dot (QD) are theoretically investigated within the framework of the geometric adiabatic approximation both in the strong and weak quantum confinement regimes. For the lower levels of the spectrum, the localization of the electron in the vicinity of the QD center-of-gravity is proved. The QD conical symmetry leads to the appearance of an atypical linear term in the effective confining potential. The influence of a uniform electric field on the system is also considered, and both the quantum-confined and pseudo- Stark effects are discussed. The possibility of the quasi-continuous spectrum implementation in the system is revealed in the presence of an electric field. For the weak quantum confinement regime, the motion of the exciton's center-of-gravity is quantized, which leads to the appearance of additional Coulomb sub-levels.
机译:理论上,在GaAs锥形量子点(QD)中的电子状态在强度和弱量子监禁方面的几何绝热近似框架内理论上研究。对于光谱的较低水平,证明了QD - 重力中心附近的电子的定位。 QD圆锥对称导致有效限制潜力中的非典型线性术语的外观。还考虑了均匀电场对系统的影响,并且讨论了量子限制和伪斑效应。在电场存在下,系统中揭示了系统中的准连续频谱实现的可能性。对于弱量子监禁制度,量化激子 - 重心的运动,这导致额外的库仑子水平的外观。

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