Photonics Research, Volume. 7, Issue 4, 473(2019)
Transparent conductive oxide-gated silicon microring with extreme resonance wavelength tunability
Fig. 1. (a) Cross-sectional and (b) top view schematic of the hybrid TCO–silicon tunable microring filter. (c) Simulated tunability (solid lines) and
Fig. 2. (a) Optical image of a fabricated tunable microring filter with a radius of 12 μm. The ITO gate (highlighted by a red line) covers the majority of the microring except the coupling region. The ground electrodes are connected to the silicon ring through a partially etched silicon slab. (b) Scanning electron micrograph (SEM) of the fabricated silicon microring, showing side-wall roughness after the RIE process.
Fig. 3. (a) Measured transmission spectra of a tunable microring filter under different applied gate biases. The microring has a waveguide width of 300 nm and a
Fig. 4. Leakage current density of a testing
Fig. 5. (a) Voltage swing of 0 to
Get Citation
Copy Citation Text
Erwen Li, Behzad Ashrafi Nia, Bokun Zhou, Alan X. Wang, "Transparent conductive oxide-gated silicon microring with extreme resonance wavelength tunability," Photonics Res. 7, 473 (2019)
Category: Silicon Photonics
Received: Jan. 21, 2019
Accepted: Feb. 22, 2019
Published Online: Apr. 11, 2019
The Author Email: Alan X. Wang (wang@oregonstate.edu)