Micro-resonator and fiber taper sensor system
A micro-resonator and fiber taper based sensing system, which uses mode splitting or frequency shift methods and polarization measurements for particle sensing.
1. A sensing apparatus comprising:
a processor and a non-transitory memory having data representative of a plurality of polarizability values for a plurality of common air pollutants and said memory having a selection algorithm;
a laser;
a based whispering gallery mode micro-resonator;
a coupling medium proximate said micro-resonator to thereby couple light into said micro-resonator to transition a tunable laser in and out resonance modes;
a photodetector positioned at an output port to detect a laser signal output at said output port of the coupling medium and said photodetector having a detector output signal representative of the detected laser signal output; and
a derived detected polarizability value derived by said processor processing the selection algorithm to analyze a transmission spectra of the detector output signal and a matching polarizability value selected from the plurality of polarizability values.
2. The sensing apparatus as recited in claim 1 , comprising:
a polarization having an input for receiving a laser emission from the laser and an output to output a polarized laser signal to the coupled medium.
3. A sensing apparatus comprising:
a processor and a memory having data representative of plurality of speckle pattern changes for a plurality of common external perturbations and said memory having a selection algorithm;
a whispering gallery mode micro-resonator;
a coupled tapered waveguide connected to a multimode fiber;
a photodetector configured to detect an output signal at an output port of the coupled tapered waveguide and said photodetector configured to detect a speckle pattern; and
said processor configured to process the selection algorithm to analyze a transmission spectra of the detector output signal, thereby deriving a detected speckle patter change and selecting a matching speckle patter change from the plurality of speckle pattern changes.
4. The sensing apparatus as recited in claim 3 , comprising:
a laser; and
a polarization controller configured to receive a laser emission from the tunable laser and output a polarized laser signal to the coupled waveguide.