Photonics Research, Volume. 10, Issue 1, A8(2022)
Compact low-birefringence polarization beam splitter using vertical-dual-slot waveguides in silicon carbide integrated platforms
Fig. 1. Schematic of the proposed PBS with VDSWs.
Fig. 2. Energy density profiles of TE and TM modes in the 4H-SiC SMWs and the VDSWs. In the simulation, the SMW has a dimension of
Fig. 3. Simulated results of the transmission efficiency as a function of (a) the coupling length with a side strip width of 200 nm and a slot width of 100 nm, (b) the side strip width with a slot width of 100 nm and a coupling length of 15 μm, and (c) the slot width with a side strip width of 200 nm and a coupling length of 15 μm.
Fig. 4. (a) TE- and (b) TM-polarized light propagation along the optimized PBS.
Fig. 5. Simulated results of (a) transmission efficiency and (b) polarization extinction ratio as a function of wavelength.
Fig. 6. (a) Process flow of the 4H-SiCOI stack fabrication; (b) process flow of the 4H-SiC photonic device fabrication.
Fig. 7. (a) SEM image of the 4H-SiCOI stack; (b) AFM image of the 4H-SiCOI surface topography within an area of
Fig. 8. (a) SEM image of the fabricated testing device; (b) zoom-in SEM image of the fabricated VDSW-based PBS.
Fig. 9. Measurement setup schematic. CW, tunable continuous-wave laser; PC, polarization controller; OSA, optical spectrum analyzer.
Fig. 10. Measured results of (a) normalized transmission efficiency and (b) polarization extinction ratio versus wavelength.
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Xiaodong Shi, Jingjing Zhang, Weichen Fan, Yaoqin Lu, Nianhua Peng, Karsten Rottwitt, Haiyan Ou, "Compact low-birefringence polarization beam splitter using vertical-dual-slot waveguides in silicon carbide integrated platforms," Photonics Res. 10, A8 (2022)
Special Issue: NEXT-GENERATION SILICON PHOTONICS
Received: Sep. 20, 2021
Accepted: Nov. 17, 2021
Published Online: Dec. 23, 2021
The Author Email: Haiyan Ou (haou@fotonik.dtu.dk)