Paper
13 October 2006 Reconfigurable optical add-drop multiplexer (R-OADM) based on silicon photonic crystal slab waveguides
Tao Chu, Hirohito Yamada, Akiko Gomyo, Jun Ushida, Satomi Ishida, Yasuhiko Arakawa
Author Affiliations +
Proceedings Volume 6376, Optomechatronic Micro/Nano Devices and Components II; 63760I (2006) https://doi.org/10.1117/12.688125
Event: Optics East 2006, 2006, Boston, Massachusetts, United States
Abstract
Reconfigurable optical add/drop multiplexers (R-OADMs) are indispensable devices in wavelength division multiplexing (WDM) network systems, since they can be used for dynamically wavelength routing and for replacing any failed OADM unit. Here, we propose a photonic integrated R-OADM device based on silicon photonic crystal (PhC) slab waveguides, which is controlled through thermo-optic effect. The R-OADM device was composed of a tunable wavelength multiplexer/demultiplexer and a 2×2 optical switch, which were both formed with Mach-Zehnder interferometers (MZIs). The device was compact with a net footprint of 500 μm × 140 μm, excluding its electrode pads. The dropping central wavelength of the R-OADM can be tuned through thermo-optic effect, and the output port of the drop signal can be selected between the THROUGH and DROP ports with the 2x2 optical switch. A maximum 10.8 nm dropping wavelength tuning was obtained with a heating power of 0.9 W. The 3-dB channel-dropping bandwidth was 5 nm and the extinction ratio at the dropping wavelength for the port THROUGH was as high as 40 dB. The tuning response speed was about 100 μsec.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Tao Chu, Hirohito Yamada, Akiko Gomyo, Jun Ushida, Satomi Ishida, and Yasuhiko Arakawa "Reconfigurable optical add-drop multiplexer (R-OADM) based on silicon photonic crystal slab waveguides", Proc. SPIE 6376, Optomechatronic Micro/Nano Devices and Components II, 63760I (13 October 2006); https://doi.org/10.1117/12.688125
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Cited by 3 scholarly publications.
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KEYWORDS
Silicon

Photonic crystals

Waveguides

Optical switching

Wavelength division multiplexing

Multiplexers

Silicon photonics

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