Title :
Demonstration of a Tunable Microwave-Photonic Notch Filter Using Low-Loss Silicon Ring Resonators
Author :
Rasras, Mahmoud S. ; Tu, Kun-Yii ; Gill, Douglas M. ; Chen, Young-kai ; White, Alice E. ; Patel, Sanjay S. ; Pomerene, Andrew ; Carothers, Daniel ; Beattie, James ; Beals, Mark ; Michel, Jurgen ; Kimerling, Lionel C.
Author_Institution :
Bell Labs., Alcatel-Lucent, Murray Hill, NJ, USA
fDate :
6/15/2009 12:00:00 AM
Abstract :
We present a fully tunable multistage narrowband optical pole-zero notch filter that is fabricated in a silicon complementary metal oxide semiconductor (CMOS) foundry. The filter allows for the reconfigurable and independent tuning of the center frequency, null depth, and bandwidth for one or more notches simultaneously. It is constructed using a Mach-Zehnder interferometer (MZI) with cascaded tunable all-pass filter (APF) ring resonators in its arms. Measured filter nulling response exhibits ultranarrow notch 3 dB BW of 0.6350 GHz, and nulling depth of 33 dB. This filter is compact and integrated in an area of 1.75 mm2. Using this device, a novel method to cancel undesired bands of 3 dB bandwidth of < 910 MHz in microwave-photonic systems is demonstrated. The ultranarrow filter response properties have been realized based on our developed low-propagation loss silicon channel waveguide and tunable ring-resonator designs. Experimentally, they yielded a loss of 0.25 dB/cm and 0.18 dB/round trip, respectively.
Keywords :
CMOS integrated circuits; Mach-Zehnder interferometers; all-pass filters; elemental semiconductors; integrated optoelectronics; microwave photonics; notch filters; optical fabrication; optical losses; optical resonators; optical tuning; optical waveguide filters; silicon; Mach-Zehnder interferometer; Si; all-pass filter; bandwidth 0.6350 GHz; low-loss silicon ring resonator; low-propagation loss silicon channel waveguide; silicon complementary metal oxide semiconductor; tunable microwave-photonic notch filter fabrication; Integrated optics; microwave-photonics; notch filter; optical waveguide components;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2008.2007748