Ultrabright and narrowband intra-fiber biphoton source at ultralow pump power
arXiv:2208.05230 · doi:10.1088/2058-9565/ac985c
Abstract
Nonclassical photon sources of high brightness are key components of quantum communication technologies. We here demonstrate the generation of narrowband, nonclassical photon pairs by employing spontaneous four-wave mixing in an optically-dense ensemble of cold atoms within a hollow-core fiber. The brightness of our source approaches the limit of achievable generated spectral brightness at which successive photon pairs start to overlap in time. For a generated spectral brightness per pump power of up to we observe nonclassical correlations at pump powers below and a narrow bandwidth of . In this regime we demonstrate that our source can be used as a heralded single-photon source. By further increasing the brightness we enter the regime where successive photon pairs start to overlap in time and the cross-correlation approaches a limit corresponding to thermal statistics. Our approach of combining the advantages of atomic ensembles and waveguide environments is an important step towards photonic quantum networks of ensemble based elements.
References in corpus (6)
- The Quantum Internet
- Progress in satellite quantum key distribution
- High quality asynchronous heralded single photon source at telecom wavelength
- Highly bright photon-pair generation in Doppler-broadened ladder-type atomic system
- An atomic Faraday beam splitter for light generated from pump degenerate four-wave mixing in a hollow-core photonic crystal fiber
- Fiber-based biphoton source with ultrabroad frequency tunability