Modulation response of quantum dot nanolight-emitting-diodes exploiting purcell-enhanced spontaneous emission


Journal article


T. Suhr, N. Gregersen, M. Lorke, J. Mørk
2011

Semantic Scholar DOI
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Cite

APA   Click to copy
Suhr, T., Gregersen, N., Lorke, M., & Mørk, J. (2011). Modulation response of quantum dot nanolight-emitting-diodes exploiting purcell-enhanced spontaneous emission.


Chicago/Turabian   Click to copy
Suhr, T., N. Gregersen, M. Lorke, and J. Mørk. “Modulation Response of Quantum Dot Nanolight-Emitting-Diodes Exploiting Purcell-Enhanced Spontaneous Emission” (2011).


MLA   Click to copy
Suhr, T., et al. Modulation Response of Quantum Dot Nanolight-Emitting-Diodes Exploiting Purcell-Enhanced Spontaneous Emission. 2011.


BibTeX   Click to copy

@article{t2011a,
  title = {Modulation response of quantum dot nanolight-emitting-diodes exploiting purcell-enhanced spontaneous emission},
  year = {2011},
  author = {Suhr, T. and Gregersen, N. and Lorke, M. and Mørk, J.}
}

Abstract

The modulation bandwidth for a quantum dot light-emitting device is calculated using a detailed model for the spontaneous emission including the optical and electronic density-of-states. We show that the Purcell enhancement of the spontaneous emission rate depends critically on the degree of inhomogeneous broadening relative to the cavity linewidth and can improve the modulation speed only within certain parameter regimes.





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