Non-classical correlations between a C-band telecom photon and a stored spin-wave
arXiv:1607.01350 · doi:10.1364/OPTICA.3.001019
Abstract
Future ground-based quantum information networks will likely use single photons transmitted through optical fibers to entangle individual network nodes. To extend communication distances and overcome limitations due to photon absorption in fibers the concept of quantum repeaters has been proposed. For that purpose, it is required to achieve quantum correlations between the material nodes and photons at telecom wavelengths which can be sent over long distances in optical fibers. Here we demonstrate non-classical correlation between a frequency converted telecom C-band photon and a spin-wave stored in an atomic ensemble quantum memory. The photons emitted from the ensemble and heralding the spin-waves are converted from 780 nm to 1552 nm by means of an all-solid-state integrated waveguide non-linear device. We show ultra-low noise operation of the device enabling a high signal to noise ratio of the converted single photon, leading to a high spin-wave heralding efficiency. The presented work is an enabling step towards the practical entanglement of remote quantum memories and the entanglement of quantum systems operating at different wavelengths.
9 pages, 5 figures
References in corpus (14)
- Quantum Repeaters with Photon Pair Sources and Multi-Mode Memories
- Provably Secure and Practical Quantum Key Distribution over 307 km of Optical Fibre
- Quantum Storage of Photonic Entanglement in a Crystal
- Quantum Memories. A Review based on the European Integrated Project "Qubit Applications (QAP)"
- Experimental demonstration of a BDCZ quantum repeater node
- Heralded Entanglement between Atomic Ensembles: Preparation, Decoherence, and Scaling
- Visible-to-telecom quantum frequency conversion of light from a single quantum emitter
- Quantum storage of entangled telecom-wavelength photons in an erbium-doped optical fibre
- Efficient and long-lived quantum memory with cold atoms inside a ring cavity
- Two-photon interference using background-free quantum frequency conversion of single photons from a semiconductor quantum dot
- Direct measurement of decoherence for entanglement between a photon and stored atomic excitation
- High-fidelity conversion of photonic quantum information to telecommunication wavelength with superconducting single-photon detectors
- Freezing motion-induced dephasing in an atomic-ensemble quantum memory
- Towards continuous-wave regime teleportation for light matter quantum relay stations
Cited by in corpus (23)
- High-fidelity entanglement between a trapped ion and a telecom photon via quantum frequency conversion
- Quantum frequency conversion to telecom of single photons from a nitrogen-vacancy center in diamond
- High-speed noise-free optical quantum memory
- Polarization insensitive frequency conversion for an atom-photon entanglement distribution via a telecom network
- Long-distance single photon transmission from a trapped ion via quantum frequency conversion
- Quantum frequency conversion of memory-compatible single photons from 606 nm to the telecom C-band
- Quantum correlations between single telecom photons and a multimode on-demand solid state quantum memory
- A cold atom temporally multiplexed quantum memory with cavity-enhanced noise suppression
- Two-Color Pump-Probe Measurement of Photonic Quantum Correlations Mediated by a Single Phonon
- Entanglement between a photonic time-bin qubit and a collective atomic spin excitation
- Efficient polarisation-preserving frequency conversion from a trapped-ion-compatible wavelength to the telecom C band
- Heralded single excitation of atomic ensemble via solid-state-based telecom photon detection
- Coherence and Entanglement Preservation of Frequency-Converted Heralded Single Photons
- Transmission of light-matter entanglement over a metropolitan network
- Mach-Zehnder interferometer using frequency-domain beamsplitter
- Optomechanically amplified wavelength conversion in diamond microcavities
- A two-way photonic interface for linking Sr+ transition at 422 nm to the telecommunications C-band
- Direct Observation of Broadband Nonclassical States in a Room-temperature Light-matter Interface
- Fast delivery of heralded atom-photon quantum correlation over 12km fiber through multiplexing enhancement
- Two-step frequency conversion for connecting distant quantum memories by transmission through an optical fiber
- Resource-efficient frequency conversion for quantum networks via sequential four-wave mixing
- Atomic-frequency-comb quantum memory via piecewise adiabatic passage
- Quantum Frequency Conversion of -long Photons from the Visible to the Telecom-C-Band