Theory of nanolaser devices: Rate equation analysis versus microscopic theory


Journal article


M. Lorke, T. Suhr, N. Gregersen, J. Mørk
2013

Semantic Scholar DOI
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Cite

APA   Click to copy
Lorke, M., Suhr, T., Gregersen, N., & Mørk, J. (2013). Theory of nanolaser devices: Rate equation analysis versus microscopic theory.


Chicago/Turabian   Click to copy
Lorke, M., T. Suhr, N. Gregersen, and J. Mørk. “Theory of Nanolaser Devices: Rate Equation Analysis versus Microscopic Theory” (2013).


MLA   Click to copy
Lorke, M., et al. Theory of Nanolaser Devices: Rate Equation Analysis versus Microscopic Theory. 2013.


BibTeX   Click to copy

@article{m2013a,
  title = {Theory of nanolaser devices: Rate equation analysis versus microscopic theory},
  year = {2013},
  author = {Lorke, M. and Suhr, T. and Gregersen, N. and Mørk, J.}
}

Abstract

Arateequationtheoryforquantum-dot-basednanolaserdevicesisdeveloped.Weshowthattheserateequations are capable of reproducing results of a microscopic semiconductor theory, making them an appropriate starting point for complex device simulations of nanolasers. The input-output characteristics and the modulation response are investigated and the limits of the rate equation approach are discussed.





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