Light coupling between vertical III-As nanowires and planar Si photonic waveguides for the monolithic integration of active optoelectronic devices on a Si platform

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Date
2016
Volume
24
Issue
16
Journal
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Publisher
Washington, DC : Optical Society of America
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Abstract

We present a new concept for the optical interfacing between vertical III-As nanowires and planar Si waveguides. The nanowires are arranged in a two-dimensional array which forms a grating structure on top of the waveguide. This grating enables light coupling in both directions between the components made from the two different material classes. Numerical simulations show that this concept permits a light extraction efficiency from the waveguide larger than 45% and a light insertion efficiency larger than 35%. This new approach would allow the monolithic integration of nanowire-based active optoelectronics devices, like photodetectors and light sources, on the Si photonics platform.

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Keywords
Integrated optics devices, Subwavelength structures, nanostructures, Theory and design
Citation
Giuntoni, I., Geelhaar, L., Bruns, J., & Riechert, H. (2016). Light coupling between vertical III-As nanowires and planar Si photonic waveguides for the monolithic integration of active optoelectronic devices on a Si platform. 24(16). https://doi.org//10.1364/OE.24.018417
License
CC BY 4.0 Unported