English

Numerical Investigation of Light Emission from Quantum Dots Embedded into On-Chip, Low Index Contrast Optical Waveguides

Optics 2020-06-19 v1 Mesoscale and Nanoscale Physics Applied Physics

Abstract

Single-photon emitters integrated into quantum optical circuits will enable new, miniaturized quantum optical devices. Here, we numerically investigate semiconductor quantum dots embedded to low refractive index contrast waveguides. We discuss a model to compute the coupling efficiency of the emitted light field to the fundamental propagation mode of the waveguide, and we optimize the waveguide dimensional parameters for maximum coupling efficiency. Further, we show that for a laterally cropped waveguide the interplay of Purcell-enhancement and optimized field profile can enhance the coupling efficiency by a factor of about two.

Keywords

Cite

@article{arxiv.2006.10466,
  title  = {Numerical Investigation of Light Emission from Quantum Dots Embedded into On-Chip, Low Index Contrast Optical Waveguides},
  author = {Theresa Hoehne and Peter Schnauber and Sven Rodt and Stephan Reitzenstein and Sven Burger},
  journal= {arXiv preprint arXiv:2006.10466},
  year   = {2020}
}