Silicon-nitride photonic circuits interfaced with monolayer MoS
arXiv:1506.02015 · doi:10.1063/1.4929779
Abstract
We report on the integration of monolayer molybdenum disulphide with silicon nitride microresonators assembled by visco-elastic layer transfer techniques. Evanescent coupling from the resonator mode to the monolayer is confirmed through measurements of cavity transmission. The absorption of the monolayer semiconductor flakes in this geometry is determined to be 850 dB/cm, which is larger than that of graphene and black phosphorus with the same thickness. This technique can be applied to diverse monolayer semiconductors for assembling hybrid optoelectronic devices such as photodetectors and modulators operating over a wide spectral range.
8 pages, 4 figures
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- Refractive uses of layered and two-dimensional materials for integrated photonics
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- Quantization of mode shifts in nanocavities integrated with atomically thin sheets
- Loss and Coupling Tuning via Heterogeneous Integration of MoS2 Layers in Silicon Photonics