English

Recombination processes in CuInS$_{2}$/ZnS Nanocrystals during steady-state photoluminescence

Materials Science 2016-02-01 v1 Optics

Abstract

We report on temperature- and excitation-power-dependent photoluminescence (PL) study of CuInS2_{2}/ZnS nanocrystals dispersed on a SiO2_{2}/Si substrate with a confocal micro-PL system. With increasing the excitation power at 22 K and room temperature, the PL spectra are blue-shifted because of the state filling. At low temperature, a small peak is observed at the low energy side of the spectrum, which could be due to the Fo¨\ddot{o}rster resonance energy transfer between different nanocrystals. The integrated PL intensity increases sublinearly as a function of excitation power with a power factor of around 2/3, which demonstrates the Auger recombination dominated process in the nanocrystals, especially under the high excitation power.

Keywords

Cite

@article{arxiv.1601.06604,
  title  = {Recombination processes in CuInS$_{2}$/ZnS Nanocrystals during steady-state photoluminescence},
  author = {Yue Sun and Chenjiang Qian and Kai Peng and Zelong Bai and Jing Tang and Yanhui Zhao and Shiyao Wu and Hassan Ali and Feilong Song and Haizheng Zhong and Xiulai Xu},
  journal= {arXiv preprint arXiv:1601.06604},
  year   = {2016}
}

Comments

12 pages, 3 figures