Observation of nonclassical correlations in biphotons generated from an ensemble of pure two-level atoms
arXiv:2108.05407 · doi:10.1103/PhysRevLett.128.083601
Abstract
We report the experimental verification of nonclassical correlations for a four-wave-mixing process in an ensemble of cold two-level atoms, confirming theoretical predictions by Du et al. in 2007 for the violation of a Cauchy-Schwarz inequality in the system, and obtaining . Quantum correlations are observed in a nano-seconds timescale, in the interference between the central exciting frequency and sidebands dislocated by the detuning to the atomic resonance. They prevail without filters over the noise background coming from linear scattering from the same optical transition. These correlations are fragile with respect to processes that disturb the phase of the atomic excitation, but are robust to variations in number of atoms and to increasing light intensities.
8 pages, 6 figures
References in corpus (7)
- Strong relative intensity squeezing by 4-wave mixing in Rb vapor
- A millisecond quantum memory for scalable quantum networks
- Efficient retrieval of a single excitation stored in an atomic ensemble
- Single-Photon Superradiance in Cold Atoms
- Diffusing-Wave Spectroscopy of Cold Atoms in Ballistic Motion
- Two-Photon Beatings Using Biphotons Generated from a Two-Level System
- Nonvolatile optical memory via recoil-induced resonance in a pure two-level system