Optical interferometric sensor
Embodiments of environmental stimulus sensors comprising multiple sources and detectors for interrogating one or more optically resonant cavities that are responsive to one or more environmental stimuli are disclosed. Such sensors have, among other advantages, improved immunity to source and/or detector noise.
1. A method comprising:
receiving a plurality of input signals at a first surface of a beam splitter, wherein the beam splitter comprises a physical adaptation for distributing each of the plurality of input signals into a first signal and a second signal based on an environmental stimulus;
distributing the plurality of input signals into a plurality of first signals and a plurality of second signals, wherein the plurality of first signals and the plurality of second signals collectively define a plurality of signal pairs, and wherein each of the plurality of signal pairs corresponds to a different one of the plurality of input signals;
generating a plurality of first electrical signals, wherein each of the plurality of first electrical signals is based on a different one of the plurality of first signals; and
computing a value for the environmental stimulus based on the plurality of first electrical signals.
2. The method of claim 1 further comprising generating a plurality of second electrical signals, wherein each of the plurality of second electrical signals is based on a different one of the plurality of second signals, and wherein the computed value for the environmental stimulus is further based on the plurality of second electrical signals.
3. The method of claim 1 further comprising providing the plurality of input signals to the beam splitter, wherein the beam splitter receives each of the plurality of input signals at the same location, and wherein each of the plurality of input signals is received at a different angle to the first surface.
4. The method of claim 1 wherein each of the plurality of input signals is received at a different location on the first surface, and wherein each of the plurality of input signals is received at a different angle to the first surface.
5. The method of claim 1 wherein each of the plurality of input signals is received at a different location on the first surface, and wherein each of the plurality of input signals is received at substantially the same angle to the first surface.
6. The method of claim 1 further comprising providing the plurality of input signals, wherein each of the plurality of input signals is characterized by a different wavelength.
7. The method of claim 1 further comprising providing the plurality of input signals, wherein each of the plurality of input signals is provided by a different one of a plurality of light sources.
8. The method of claim 1 further comprising providing the plurality of input signals by operations comprising:
providing a first light signal; and
distributing the first light signal to form the plurality of input signals.