Title :
Coherent receiver front-end module including a polarization diversity waveguide OIC and a high-speed InGaAs twin-dual p-i-n photodiode OEIC both based on InP
Author :
Hamacher, M. ; Heidrich, H. ; Krüger, U. ; Stenzel, R. ; Bauer, J.G. ; Albrecht, H.
Author_Institution :
Heinrich-Hertz-Inst. fuer Nachrichtentechnik, Berlin, Germany
Abstract :
The economic implementation of coherent optical systems requires practical integrated optical front-end receiver devices with reasonable degree of integration. As a precursor to such an OEIC, an InGaAsP/InP polarization diversity waveguide OIC, including two TE/TM-mode splitters, two TE-filters, two 3-dB couplers, and a planar front-illuminated InGaAs twin-dual-p-i-n photodiode-OEIC (including two balanced p-i-n photodiodes) was fabricated. The OIC depicts a TE/TM-mode separation of more than 13 dB, a 3-dB coupler imbalance of less than 10% and an intrinsic loss of less than 2 dB. A single detector device shows a responsivity of 1.05 A/W at a wavelength of 1.55 mu m, a total series resistance below 10 Omega , and a 3-dB bandwidth of more than 10 GHz. The O(E)ICs have been (packaged) in a versatile housing for system tests. The operation of the modules has been demonstrated in a heterodyne experiment yielding a bandwidth of more than 2.2 GHz for the whole module.<>
Keywords :
III-V semiconductors; gallium arsenide; indium compounds; integrated optics; integrated optoelectronics; optical losses; optical receivers; optical waveguides; p-i-n diodes; photodetectors; photodiodes; 1.55 micron; 10 GHz; 10 ohm; 2 dB; 2.2 GHz; IR; InGaAs; InP; OEIC; OIC; TE-filters; TE/TM-mode separation; TE/TM-mode splitters; coherent optical systems; coherent receivers; coupler imbalance; front-illuminated; heterodyne experiment; high-speed; integrated optical front-end receiver devices; intrinsic loss; light coherence; light polarisation; optical couplers; optical integrated circuit; planar; polarization diversity waveguide; responsivity; semiconductors; single detector device; system tests; total series resistance; twin-dual p-i-n photodiode; versatile housing; Bandwidth; Couplers; Indium phosphide; Integrated optics; Optical devices; Optical mixing; Optical polarization; Optical receivers; Optoelectronic devices; Tellurium;
Journal_Title :
Photonics Technology Letters, IEEE