DocumentCode :
1513003
Title :
An asymmetric twin-waveguide high-bandwidth photodiode using a lateral taper coupler
Author :
Xia, Fengnian ; Thomson, John K. ; Gokhale, Milind R. ; Studenkov, Pavel V. ; Wei, Jian ; Lin, Wilson ; Forrest, Stephen R.
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., NJ, USA
Volume :
13
Issue :
8
fYear :
2001
Firstpage :
845
Lastpage :
847
Abstract :
We describe a high-bandwidth high-responsivity low-polarization sensitivity p-i-n photodiode based on an integratable asymmetric twin-waveguide structure. Incident light is collected by a diluted large-fiber guide followed by transfer to a thin-coupling waveguide using a low-loss lateral-taper coupler. The light is finally absorbed by the uppermost In/sub 0.53/Ga/sub 0.47/As layer. The device has a responsivity of (0.75/spl plusmn/0.03) ampere per watt and a polarization sensitivity of /spl les/0.4 dB. The measured electrical 3 dB bandwidth is /spl ges/40 GHz. The responsivity is comparable with the best 40-GHz waveguide p-type-intrinsic-n-type photodiodes, while the twin-waveguide design provides a single-epitaxial growth step and a simple means of fabrication with possibility for monolithic integration of the photodiodes with other optical components, such as semiconductor optical amplifiers and in-plane waveguide filters.
Keywords :
integrated optics; integrated optoelectronics; optical communication equipment; optical couplers; optical waveguides; photodetectors; photodiodes; sensitivity; symmetry; 40 GHz; GHz waveguide p-type-intrinsic-n-type photodiodes; In/sub 0.53/Ga/sub 0.47/As; In/sub 0.53/Ga/sub 0.47/As layer; asymmetric twin-waveguide high-bandwidth photodiode; diluted large-fiber guide; high-bandwidth high-responsivity low-polarization sensitivity p-i-n photodiode; in-plane waveguide filters; integratable asymmetric twin-waveguide structure; lateral taper coupler; low-loss lateral-taper coupler; monolithic integration; polarization sensitivity; responsivity; semiconductor optical amplifiers; single-epitaxial growth step; thin-coupling waveguide; twin-waveguide design; Bandwidth; Electric variables measurement; Optical coupling; Optical design; Optical device fabrication; Optical polarization; Optical waveguide components; Optical waveguides; PIN photodiodes; Semiconductor waveguides;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/68.935823
Filename :
935823
Link To Document :
بازگشت