English Version | 中文版
4月15日学术报告——赵晶 教授(University of Connecticut)
发布时间:2019-04-11 来源:国际化学理论中心 浏览:29

报告题目

Optical Interaction between Metal and Semiconductor Nanoparticles

报告人

赵晶 教授

报告人单位

Department of Chemistry, University of Connecticut

报告时间

2019-04-15 10:00

报告地点

合肥微尺度物质科学国家研究中心九楼会议室(9004

主办单位

合肥微尺度物质科学国家研究中心、国际化学理论中心(ICCT

报告介绍

Abstract: 

Metal and semiconductor quantum dots (QDs) exhibit unique size and composition dependent optical properties. The key elements that determine their optical properties are localized surface plasmon resonance in metal  anoparticles and excitons in quantum dots. Particularly, we study plasmon-exciton interaction of single QDs near metal nanoparticles. When QDs are placed near Au nanoparticles, their exciton/multiexciton emission lifetimes and quantum yields are modified. At the single QD level, we found that biexciton emission of the QDs near Au nanoparticles was enhanced, and the extent of enhancement dependent on the excitation wavelength. The emission of single QDs changes from photon antibunching to bunching by exciting the QDs close to the plasmon resonance. These studies suggest that plasmonic structures can be used to modify the exciton/multiexciton emission efficiency of QDs. On the other hand, strong coupling in hybrid metal-semiconductor nanostructures could lead to splitting in the dark-field scattering and also fluorescence spectra due to the rapid energy exchange between plasmon and exciton. Using correlated single-particle spectroscopy and electron microscopy, strong coupling was observed in Au-QD-Au sandwiched nanostructures.