IEEE Journal of Quantum Electronics · 2014 · 35 citations · 20 references
EngineeringSensorsOptical PropertiesMechanical EngineeringDominant Thermal NoiseInfrasonic FrequenciesNoiseFiber Optic SensingThermal Noise FloorFiber OpticsAcoustic SensorInstrumentationThermal SensorFundamental Thermal NoiseOptical SensorOptical SensorsFiber Optic
The fundamental thermal noise in fiber-optic sensors remains to be an interesting research topic. In particular, its spectral behavior in the infrasonic frequency range has yet to be observed experimentally. In this paper, we assess the feasibility of probing the thermal noise floor at infrasonic frequencies with two sensor configurations: 1) fiber Fabry-Perot strain sensors and 2) Mach-Zehnder-Fabry-Perot hybrid phase sensors. In each case, we compare the theory-predicted thermomechanical noise (the dominant thermal noise in fibers at low frequencies) with other potential system noises such as laser noises and detector noises. Our analysis indicates that the thermal-noise-limited fiber-optic sensing can be very difficult to achieve with the strain-sensing scheme, but much more feasible with the hybrid phase sensors.
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Laser phase and frequency stabilization using an optical resonator
R. W. P. Drever, J. L. Hall, Frank V. Kowalski et al. · Applied Physics B · 1983 · 3.7K citations
An introduction to Pound–Drever–Hall laser frequency stabilization
Eric Black · American Journal of Physics · 2001 · 1.4K citations · Full text
Probing the Ultimate Limit of Fiber-Optic Strain Sensing
G. Gagliardi, M. Salza, S. Avino et al. · Science · 2010 · 233 citations
Relative Displacements, Engineering, Strain Measurements +24