Title :
Tapered rib adiabatic following fiber couplers in etched GaAs materials for monolithic spot-size transformation
Author :
Vawter, G. Allen ; Sullivan, Charles T. ; Wendt, Joel R. ; Smith, Robert E. ; Hou, Hong Q. ; Klem, John F.
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
fDate :
12/1/1998 12:00:00 AM
Abstract :
Design details and demonstration data are presented for an (Al,Ga)As monolithic tapered rib waveguide achieving modal spot-size transformation. The tapered rib adiabatic following fiber coupler structure (TRAFFIC) achieves two-dimensional (2-D) expansion of the output optical mode of single-transverse-mode semiconductor waveguide modulators and lasers using a one-dimensional (1-D) taper between noncritical initial and final taper widths which are compatible with optical lithographic techniques. Measurements are presented of total mode expansion losses between ~1.5-2.0 dB and semiconductor to single-mode-fiber waveguide coupling losses of ~0.5-1.0 dB for doped pin optical-modulator-type waveguides using the TRAFFIC waveguide. A semiconductor laser with a TRAFFIC tapered-rib mode-expansion section and measured coupling loss between the laser output and single-mode fiber of only 0.9 dB is described. Finally, a TRAFFIC Spot-size transformer for undoped waveguide modulators with total mode expansion losses of 1.84 dB and excellent modal behavior at 1.32-μm wavelength is presented. The TRAFFiC structure is particularly well suited for integration with both active and passive etched rib waveguide devices. Fabrication is relatively simple, requiring only patterning and etching of the tapered waveguide and uniform-width outer mesa waveguide without any epitaxial regrowth
Keywords :
etching; gallium arsenide; integrated optics; integrated optoelectronics; optical communication equipment; optical waveguides; photolithography; rib waveguides; semiconductor lasers; waveguide lasers; 1.32 mum; 1.5 to 2 dB; AlGaAs; TRAFFIC; doped pin optical-modulator-type waveguides; etched GaAs materials; modal spot-size transformation; monolithic spot-size transformation; monolithic tapered rib waveguide; optical lithographic techniques; output optical mode; single-mode-fiber waveguide coupling; single-transverse-mode semiconductor waveguide lasers; single-transverse-mode semiconductor waveguide modulators; tapered rib adiabatic following fiber coupler structure; tapered rib adiabatic following fiber couplers; total mode expansion losses; Etching; Fiber lasers; Gallium arsenide; Laser modes; Optical fiber couplers; Optical modulation; Optical waveguides; Semiconductor lasers; Semiconductor waveguides; Waveguide lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/2944.658790