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Effect of quantum and dielectric confinement on the exciton-exciton interaction energy in type II core/shell semiconductor nanocrystals

机译:量子和介电限制对II型核/壳半导体纳米晶体中激子-激子相互作用能的影响

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We study theoretically two electron-hole pair states (biexcitons) in core/shell hetero-nanocrystals with type II alignment of energy states, which promotes spatial separation of electrons and holes. To describe Coulomb interactions in these structures, we apply first-order perturbation theory, in which we use an explicit form of the Coulomb-coupling operator that takes into account interface-polarization effects. This formalism is used to analyze the exciton-exciton interaction energy as a function of the core and shell sizes and their dielectric properties. Our analysis shows that the combined contributions from quantum and dielectric confinement can result in strong exciton-exciton repulsion with giant interaction energies on the order of 100 meV. Potential applications of strongly interacting biexciton states include such areas as lasing, nonlinear optics, and quantum information.
机译:我们从理论上研究了核/壳杂纳米晶体中的两个电子-空穴对态(比色子),它们的能态为II型排列,从而促进了电子与空穴的空间分离。为了描述这些结构中的库仑相互作用,我们应用了一阶扰动理论,其中我们使用考虑界面极化作用的显式形式的库仑耦合算子。这种形式主义用于分析作为核和壳尺寸及其介电性质的函数的激子-激子相互作用能。我们的分析表明,量子和介电限制的综合作用可导致强激子-激子排斥,并具有约100 meV的巨大相互作用能。强相互作用的双激子态的潜在应用包括激光,非线性光学和量子信息等领域。

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