Quantum Dot Lattice Embedded in An Organic Medium: Hybrid Exciton State and Optical Response

Дата и время публикации : 1998-12-17T17:05:17Z

Авторы публикации и институты :
Nguyen Que Huong
Joseph L. Birman

Ссылка на журнал-издание: Ссылка на журнал-издание не найдена
Коментарии к cтатье: 16 pages,2 Figs;Changes in Text and Figures
Первичная категория: cond-mat.mes-hall

Все категории : cond-mat.mes-hall, cond-mat.mtrl-sci

Краткий обзор статьи: We propose a new model to implement organic exciton-semiconductor exciton hybridization by embedding a semiconductor quantum dot array into an organic medium. A Wannier-Mott transfer exciton is formed when the exciton in each semiconductor dot interacts via the multipole-multipole coupling with other excitons in the different dtos of the array. A new hybrid exciton appears in the system owing to strong dipole-dipole interaction of the Frenkel exciton of the organic molecules with the Wannier Mott transfer exciton of the quantum dot array. This hybrid exciton has both a large oscillator strength (Frenkel like) and a large Bohr radius (Wannier like). At resonance between these two types of excitons, the optical non-linearity is very large and can be controlled by changing parameters of the system such as dot radius and dot spacing.

Category: Physics