Reconfigurable spectroscopy system
A reconfigurable spectroscopy system comprises tunable lasers and wavelength lockers to lock to accurate reference wavelengths. Band combiners with differently optimized wavelength ranges multiplex the optical signal over the time domain, to emit a plurality of reference wavelengths for spectroscopy applications. The power requirements are greatly reduced by multiplexing over the time domain in time slots which do not affect sampling and receiving of the spectroscopy data.
1. A device comprising:
a plurality of tunable lasers generating a plurality of wavelengths;
a plurality of wavelength lockers to reduce wavelength noise from the plurality of wavelengths;
a plurality of band combiners each configured to combine a different wavelength range than other band combiners of the plurality of band combiners;
a broadband combiner receiving outputs of the plurality of band combiners;
a passive splitter configured to split an output of the broadband combiner; and
a plurality of emitters to emit a plurality of reference wavelengths, each emitter receiving an output of the passive splitter.
2. The device of claim 1 , wherein the plurality of wavelength lockers comprises a plurality of optical channel monitors located after the plurality of band combiners, and feeding back to the plurality of tunable lasers.
3. The device of claim 2 , wherein each optical channel monitor of the plurality of optical channel monitor:
comprises:
one input configured to receive a portion of light from a tunable laser;
an arrayed waveguide grating;
a first photodiode outputting a first current; and
a second photodiode outputting a second current; and
is configured to monitor a ratio of the first current to the second current, to stabilize a target wavelength.
4. The device of claim 1 , wherein each band combiner of the plurality of band combiners is configured to operate within a wavelength range of 100 nm.