Publication | Open Access
Response of microchip solid-state laser to external frequency-shifted feedback and its applications
48
Citations
26
References
2013
Year
EngineeringLaser ApplicationsMicrochip Solid-state LaserHigh-power LasersChaotic HarmonicOptical PropertiesLaser-based SensorYag LaserFiber LaserSolid-state LasersOptical PumpingPhotonicsPhysicsLaser-assisted DepositionAdvanced Laser ProcessingSpectral Linewidth BroadeningApplied PhysicsExternal Frequency-shifted FeedbackOptoelectronics
The response of the microchip solid-state Nd:YAG laser, which is subjected to external frequency-shifted feedback, is experimentally and theoretically analysed. The continuous weak response of the laser to the phase and amplitude of the feedback light is achieved by controlling the feedback power level, and this system can be used to achieve contact-free measurement of displacement, vibration, liquid evaporation and thermal expansion with nanometre accuracy in common room conditions without precise environmental control. Furthermore, a strong response, including chaotic harmonic and parametric oscillation, is observed, and the spectrum of this response, as examined by a frequency-stabilised Nd:YAG laser, indicates laser spectral linewidth broadening.
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