A Many-Atom Cavity QED System with Homogeneous Atom-Cavity Coupling
arXiv:1311.1805 · doi:10.1364/OL.39.004005
Abstract
We demonstrate a many-atom-cavity system with a high-finesse dual-wavelength standing wave cavity in which all participating rubidium atoms are nearly identically coupled to a 780-nm cavity mode. This homogeneous coupling is enforced by a one-dimensional optical lattice formed by the field of a 1560-nm cavity mode.
4 pages, 3 figures
References in corpus (6)
- Cavity Opto-Mechanics with a Bose-Einstein Condensate
- Conditional Spin-Squeezing of a Large Ensemble via the Vacuum Rabi Splitting
- Self-Organization Threshold Scaling for Thermal Atoms Coupled to a Cavity
- Collective state measurement of mesoscopic ensembles with single-atom resolution
- Heterodyne non-demolition measurements on cold atomic samples: towards the preparation of non-classical states for atom interferometry
- Backaction noise produced via cavity-aided nondemolition measurement of an atomic clock state
Cited by in corpus (23)
- Quantum state magnification
- Programmable Interactions and Emergent Geometry in an Atomic Array
- Time-Reversal-Based Quantum Metrology with Many-Body Entangled States
- Large conditional single-photon cross-phase modulation
- Collective Spin-Light and Light-Mediated Spin-Spin Interactions in an Optical Cavity
- One- and two-axis squeezing of atomic ensembles in optical cavities
- A noise-immune cavity-assisted non-destructive detection for an optical lattice clock in the quantum regime
- Phase locking a clock oscillator to a coherent atomic ensemble
- Superresolution microscopy of optical fields using tweezer-trapped single atoms
- Beyond the Tavis-Cummings model: revisiting cavity QED with atomic ensembles
- Quantum Fisher Information as a Predictor of Decoherence in the Preparation of Spin-Cat States for Quantum Metrology
- Bose-Einstein Condensate Comagnetometer
- Cavity QED Based on Thermal Atoms Interacting with a Photonic Crystal Cavity: A Feasibility Study
- Spatially Homogeneous Entanglement for Matter-Wave Interferometry Created with Time-Averaged Measurements
- Quantum Enhanced Cavity QED Interferometer with Partially Delocalized Atoms in Lattices
- Retrieval of cavity-generated atomic spin-squeezing after free-space release
- Cavity probe for real-time detection of atom dynamics in an optical lattice
- Optimizing one-axis twists for variational Bayesian quantum metrology
- Overlapping two standing-waves in a microcavity for a multi-atom photon interface
- Trapping Yb Atoms into a One-Dimensional Optical Lattice with a Small Waist
- Asymmetric sequential Landau-Zener dynamics of Bose condensed atoms in a cavity
- Composite device for interfacing an array of atoms with a single nanophotonic cavity mode
- Protection layers on a superconducting microwave resonator toward a hybrid quantum system