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Electronic States and Light Absorption in a Cylindrical Quantum Dot Having Thin Falciform Cross Section

机译:具有薄的镰状横截面的圆柱量子点中的电子态和光吸收

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摘要

Energy level structure and direct light absorption in a cylindrical quantum dot (CQD), having thin falciform cross section, are studied within the framework of the adiabatic approximation. An analytical expression for the energy spectrum of the particle is obtained. For the one-dimensional “fast” subsystem, an oscillatory dependence of the wave function amplitude on the cross section parameters is revealed. For treatment of the “slow” subsystem, parabolic and modified Pöschl-Teller effective potentials are used. It is shown that the low-energy levels of the spectrum are equidistant. In the strong quantization regime, the absorption coefficient and edge frequencies are calculated. Selection rules for the corresponding quantum transitions are obtained.
机译:在绝热近似的框架内研究了具有薄的f形截面的圆柱量子点(CQD)中的能级结构和直接光吸收。获得了粒子能谱的解析表达式。对于一维“快速”子系统,揭示了波函数振幅对横截面参数的振荡依赖性。为了处理“慢速”子系统,使用了抛物线形和修正的Pöschl-Teller有效电势。结果表明,光谱的低能级是等距的。在强量化方案中,将计算吸收系数和边沿频率。获得了相应量子跃迁的选择规则。

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