Non-linear Spectroscopy of Sr Atoms in an Optical Cavity for Laser Stabilization
arXiv:1507.05757 · doi:10.1103/PhysRevA.92.053820
Abstract
We study the non-linear interaction of a cold sample of strontium-88 atoms coupled to a single mode of a low finesse optical cavity in the so-called bad cavity limit and investigate the implications for applications to laser stabilization. The atoms are probed on the weak inter-combination line at 689 nm in a strongly saturated regime. Our measured observables include the atomic induced phase shift and absorption of the light field transmitted through the cavity represented by the complex cavity transmission coefficient. We demonstrate high signal-to-noise-ratio measurements of both quadratures - the cavity transmitted phase and absorption - by employing FM spectroscopy (NICE-OHMS). We also show that when FM spectroscopy is employed in connection with a cavity locked to the probe light, observables are substantially modified compared to the free space situation where no cavity is present. Furthermore, the non-linear dynamics of the phase dispersion slope is experimentally investigated and the optimal conditions for laser stabilization are established. Our experimental results are compared to state-of-the-art cavity QED theoretical calculations.
7 pages, 4 figures
References in corpus (10)
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Frequency ratio of two optical clock transitions in Yb and constraints on the time-variation of fundamental constants
- A New Method for Gravitational Wave Detection with Atomic Sensors
- 8E-17 fractional laser frequency instability with a long room-temperature cavity
- Improved tests of Local Position Invariance using 87Rb and 133Cs fountains
- Geophysical applicability of atomic clocks: direct continental geoid mapping
- A high flux source of cold strontium atoms
- Phase locking a clock oscillator to a coherent atomic ensemble
- Strong Coupling on a Forbidden Transition in Strontium and Nondestructive Atom Counting
- Observation of Motion Dependent Nonlinear Dispersion with Narrow Linewidth Atoms in an Optical Cavity
Cited by in corpus (13)
- 1.5 m lasers with sub 10 mHz linewidth
- End-to-end topology for fiber comb based optical frequency transfer at the level
- On-Line Estimation of Local Oscillator Noise and Optimisation of Servo Parameters in Atomic Clocks
- Magnetically-Induced Optical Transparency on a Forbidden Transition in Strontium for Cavity-Enhanced Spectroscopy
- Cavity-QED determination of the natural linewidth of the Sr millihertz clock transition with 30Hz resolution
- Strong Coupling on a Forbidden Transition in Strontium and Nondestructive Atom Counting
- Dynamics of bad-cavity enhanced interaction with cold Sr atoms for laser stabilization
- Shelving spectroscopy of the strontium intercombination line
- Continuous cavity-QED with an atomic beam
- Magnetically Induced Optical Transparency With Ultra-Narrow Spectrum
- Observation of photon recoil effects in single-beam absorption spectroscopy with an ultracold strontium gas
- Slow Light Frequency Reference Cavities -- Proof of Concept for Reducing the Frequency Sensitivity Due to Length Fluctuations
- Coupling atoms to cavities with narrow linewidth optical transitions: Applications to frequency metrology