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EFFECT OF DIELECTRIC CONSTANT ON THE EXCITONrnGROUND STATE ENERGY OF CdSe QUANTUM DOTS

机译:介电常数对CdSe量子点激子能态能的影响

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摘要

The B-spline technique is used in the calculation of the exciton ground state energy based on the effective mass approximation (EMA) model.The exciton is confined in CdSe microspherical crystallites with a finite-height potential wall (dots).In this approach,(a) the wave function is allowed to penetrate to the outside of the dots; (b) the dielectric constants of the quantum dot and the surrounding material are considered to be different; and (c) the dielectric constant of the dots are size-dependent.The exciton energies as functions of radii of the dots in the range 0.5-3.5nm are calculated and compared with experimental and previous theoretical data.The results show that: (1) The exciton energy is convergent as the radius of the dot becomes very small.(2) A good agreement with the experimental data better than other theoretical results is achieved.(3) The penetration (or leaking) of the wave function and the difference of the dielectric constants in different regions are necessary for correcting the Coulomb interaction energy and reproducing experimental data.(4) The EMA model with B-spline technique can describe the status of excition confined in quantum dot very well.
机译:B样条技术用于基于有效质量近似(EMA)模型计算激子基态能量,激子被限制在具有有限高度势垒(点)的CdSe微球微晶中。 (a)允许波函数渗透到点的外部; (b)量子点和周围材料的介电常数被认为是不同的; (c)点的介电常数与尺寸有关。计算出在0.5-3.5nm范围内的激子能量与点半径的函数关系,并将其与实验和先前的理论数据进行比较。结果表明:(1 )随着点半径变得很小,激子能量会聚。(2)与实验数据的吻合度比其他理论结果更好。(3)波函数的渗透(或泄漏)及其差校正库仑相互作用能并重现实验数据是必要的。(4)利用B样条技术的EMA模型可以很好地描述量子点内的激发态。

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