Multiple wavelength light-source with tracking multiplexer
A transmitter assembly incorporating multiple laser diodes that are wavelength multiplexed together using a planar lightwave circuit, and where the multiplexer's transmission spectrum depends on temperature at the same rate as the laser diodes. This allows a design for lower loss in the multiplexer and therefore is more power efficient.
1. A transmitter for a wavelength division multiplexing communication system, comprising:
a plurality of laser light sources which output light, each of the laser light sources outputting light about different wavelengths, the wavelengths shifting with variation of temperature of the laser light sources;
a planar lightwave circuit positioned to receive light from the laser light sources and combine the light, the planar lightwave circuit having a passband with a center wavelength that shifts with variation of temperature of the planar lightwave circuit, a shift in center wavelength with variation of temperature substantially matching half of a shift in wavelength of the light from the lasers with variation of temperature.
2. The transmitter of claim 1 , wherein the planar lightwave circuit comprises an arrayed waveguide grating (AWG).
3. The transmitter of claim 2 , wherein the AWG includes a polymeric material in a grating region of the AWG.
4. The transmitter of claim 3 , wherein the polymeric material fills an etched trench in the grating region.
5. A transmitter for a wavelength division multiplexing communication system, comprising:
a plurality of laser light sources which output light, each of the laser light sources outputting light about different wavelengths, the wavelengths shifting with variation of temperature of the laser light sources;
a planar lightwave circuit positioned to receive light from the laser light sources and combine the light, the planar lightwave circuit having a passband with a center wavelength that shifts with variation of temperature of the planar lightwave circuit, a shift in center wavelength with variation of temperature substantially matching thirty percent of a shift in wavelength of the light from the lasers with variation of temperature.
6. The transmitter of claim 5 , wherein the planar lightwave circuit comprises an arrayed waveguide grating (AWG).
7. The transmitter of claim 6 , wherein the AWG includes a polymeric material in a grating region of the AWG.
8. The transmitter of claim 7 , wherein the polymeric material fills an etched trench in the grating region.