研究目的
To develop a unified approach for calculating Auger recombination lifetimes that is applicable to all degrees of confinement, explicitly including electron–hole interactions.
研究成果
The interacting approach developed provides a framework that is able to predict quantitatively accurate Auger recombination lifetimes in both quantum dots and nanorods. It is the first to postdict the experimentally observed linear volume dependence of the Auger recombination lifetime in quantum dots as well as the correct scaling of the Auger recombination lifetimes in nanorods with respect to the length and volume.
研究不足
The approach assumes the excitons scatter coherently; thus, systems in which exciton diffusion is the rate limiting step are currently outside the scope of this approach.