The study of the behavior of exciton and photon within semiconductor microcavity under hydrostatic pressure


Autoria(s): Zhang JD; Chen JH; Deng YM; An L; Zhang H; Yang FH; Li GH; Zheng HZ
Data(s)

2003

Resumo

We studied, for the first time, the strong coupling between exciton and cavity mode within semiconductor microcavity under hydrostatic pressure, and measured the Rabi splitting. The strong coupling between exciton and cavity mode, and so Rabi splitting appear clearly as the applied pressure reaches 0.37-0.41 GPa. The experiment result shows that hydrostatic pressure not only can tune the coupling between exciton and cavity mode effectively, but also can keep exciton property almost unchanged during the whole tuning procedure in contrast to other tuning method (temperature field et al). Our result agrees with the related theory very well. The Rabi splitting, extracted from fitting the measured mode-energy vs pressure curves with correspanding theoretical model, is equal to 6 meV.

Identificador

http://ir.semi.ac.cn/handle/172111/11560

http://www.irgrid.ac.cn/handle/1471x/64750

Idioma(s)

中文

Fonte

Zhang JD; Chen JH; Deng YM; An L; Zhang H; Yang FH; Li GH; Zheng HZ .The study of the behavior of exciton and photon within semiconductor microcavity under hydrostatic pressure ,SPECTROSCOPY AND SPECTRAL ANALYSIS,2003,23 (2):223-225

Palavras-Chave #半导体物理 #semiconductor microcavity #hydrostatic pressure spectrum #Rabi splitting #QUANTUM MICROCAVITY #PHOTOLUMINESCENCE
Tipo

期刊论文