DocumentCode
3075606
Title
On-chip ultra-wideband microwave photonic phase shifter and true time delay line based on a single phase-shifted waveguide Bragg grating
Author
Burla, M. ; Cortes, L. Romero ; Ming Li ; Xu Wang ; Chrostowski, L. ; Azana, Jose
Author_Institution
Energie, Mater. et Telecommun., Inst. Nat. de la Rech. Sci., Varennes, QC, Canada
fYear
2013
fDate
28-31 Oct. 2013
Firstpage
92
Lastpage
95
Abstract
We propose and experimentally demonstrate a novel, ultra-broadband and continuously tunable integrated microwave photonic processor that can operate both as a RF phase shifter (PS) and a true-time-delay (TTD) line. The device is implemented with a silicon phase-shifted waveguide Bragg grating (PS-WBG) realized with a CMOS compatible process. The grating features a sharp phase shift localized within the reflection band that can be exploited in conjunction with optical single sideband modulation with full carrier (OSSB+C) to generate either PS or TTD on the modulated RF signal, depending on the relative frequency position of the carrier and the sideband with respect to the phase shift. Proof-of-concept experiments show the generation of a delay up to 25.7 ps over an 8 GHz bandwidth, and a phase shift of approx. 90 degrees over the bandwidth 16-20 GHz is also demonstrated. The phase shifter demonstration is ultimately limited by the available measurement setup, as the device is capable of providing up to 300 degrees phase shift for RF frequencies above 16 GHz over a record bandwidth approaching 1 THz.
Keywords
Bragg gratings; delays; integrated optics; microwave photonics; optical modulation; optical phase shifters; optical waveguides; silicon; OSSB+C; PS-WBG; RF phase shifter; Si; bandwidth 16 GHz to 20 GHz; bandwidth 8 GHz; microwave photonics; on-chip ultrawideband phase shifter; optical single sideband modulation; optical single sideband modulation with full carrier; reflection band; relative frequency position; silicon phase-shifted waveguide Bragg grating; single phase-shifted waveguide Bragg grating; true time delay line; Microwave filters; Microwave photonics; Optical fibers; Optical signal processing; Radio frequency; Bragg gratings; microwave photonics; optical delay lines; phase shifter; tunable delay;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Photonics (MWP), 2013 International Topical Meeting on
Conference_Location
Alexandria, VA
Type
conf
DOI
10.1109/MWP.2013.6724027
Filename
6724027
Link To Document