Publication | Open Access
Contribution of thermal noise to frequency stability of rigid optical cavity via Hertz-linewidth lasers
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Citations
13
References
2006
Year
Optical MaterialsQuantum PhotonicsEngineeringOptical Transmission SystemLaser ScienceCavity QedFrequency NoiseLaser ApplicationsFp ReferencesOptomechanicsHigh-power LasersOptical PropertiesHertz-linewidth LasersThermal NoisePhotonicsPhysicsFundamental LimitsRigid Optical CavityApplied PhysicsOptoelectronics
We perform detailed studies of state-of-the-art laser stabilization to high finesse optical cavities, revealing fundamental mechanical thermal noise-related length fluctuations. We compare the frequency noise of lasers tightly locked to the resonances of a variety of rigid Fabry-Perot cavities of differing lengths and mirror substrate materials. The results are in agreement with the theoretical model proposed in K. Numata, A. Kemery, and J. Camp [Phys. Rev. Lett. 93, 250602 (2004)]. The results presented here on the fundamental limits of FP references will impact planning and construction of next generation ultrastable optical cavities.
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