Claims
- 1. A wavelength division multiplexing coupler comprising:
a coupling section; at least one input port; a plurality of output ports; a loss element; wherein the at least one input port is coupled to the coupling section by a wave guide; wherein the plurality of output ports is coupled to the coupling section by a plurality of wave guides; and wherein the at least one of the plurality of output ports has a loss element for adjusting power output at the at least one output port.
- 2. The wavelength division multiplexing coupler of claim 1, wherein the loss element is a fiber grating.
- 3. The wavelength division multiplexing coupler of claim 1, wherein the loss element has a filter characteristic comprising a pass band and a rejection band that shifts as a function of temperature.
- 4. The wavelength division multiplexing coupler of claim 3, wherein the filter characteristic shifts at −5 ppm/C.
- 5. The wavelength division multiplexing coupler of claim 1, wherein the wavelength division multiplexing coupler has a temperature sensitivity coefficient of +5 ppm/C.
- 6. The wavelength division multiplexing coupler of claim 1, wherein the wavelength division multiplexing coupler has a temperature sensitivity coefficient of between −20 ppm/C and +20 ppm/C.
- 7. The wavelength division multiplexing coupler of claim 1, wherein the power output of the at least one of the plurality of output ports is proportional to a shift in wavelength of light input into the at least one input port.
- 8. The wavelength division multiplexing coupler of claim 1, wherein the light input to the at least one input port is from a light source selected from the group consisting of a fiber optic light source and a semiconductor light source.
- 9. The wavelength division multiplexing coupler of claim 1, wherein the loss element has a filter characteristic that matches a temperature sensitivity coefficient of the wavelength division multiplexing coupler.
- 10. The wavelength division multiplexing coupler of claim 1, wherein the power output at the at least one output port is balanced.
- 11. A method comprising:
determining a temperature sensitivity coefficient of a wavelength division multiplexing coupler; passing light from a light source through at least one input port of the wavelength division multiplexing coupler; and adjusting, as a function of temperature, power output at a plurality of output ports of the wavelength division multiplexing coupler, the power output being adjusted by a loss element at at least one of the plurality of output ports, the loss element having a filter characteristic that matches the temperature sensitivity of the wavelength division multiplexing coupler.
- 12. The method of claim 11, wherein the filter characteristic is defined by a rejection band and a pass band that shift as the temperature changes.
- 13. The method of claim 11, wherein determining the temperature sensitivity coefficient comprises:
measuring the power output at the plurality of output ports of the wavelength division multiplexing coupler; and adjusting a wavelength of the light from the light source so that the power output at the plurality of output ports is balanced.
- 14. The method of claim 11, wherein the light source is selected from the group consisting of a fiber optic light source and a semiconductor light source.
GOVERNMENT INTERESTS
[0001] The Government may have rights in this invention pursuant to Contract No. DL-H-513262, awarded by the Department of the Navy.