Hiding Single Photons With Spread Spectrum Technology
arXiv:1004.0251 · doi:10.1103/PhysRevLett.104.223601
Abstract
We describe a proof-of-principal experiment demonstrating the use of spread spectrum technology at the single photon level. We show how single photons with a prescribed temporal shape, in the presence of interfering noise, may be hidden and recovered.
4 pages, 5 figures.
References in corpus (3)
Cited by in corpus (19)
- Integrated micro-comb sources for quantum optical applications
- Frequency-encoded photonic qubits for scalable quantum information processing
- Electro-Optic Frequency Beamsplitters and Tritters for High-Fidelity Photonic Quantum Information Processing
- Quantum optical waveform conversion
- Ultrabright Backward-wave Biphoton Source
- Experimental demonstration of spinor slow light
- Fully Arbitrary Control of Frequency-Bin Qubits
- Bright Single Photons for Light Matter Interaction
- Revival of Quantum Interference by Modulating the Biphotons
- Sub-nanosecond Electro-optic Modulation of Triggered Single Photons from a Quantum Dot
- Quantum Communication using Code Division Multiple Access Network
- Time-resolved Hanbury Brown-Twiss interferometry of on-chip biphoton frequency combs using Vernier phase modulation
- Setting a disordered password on a photonic memory
- Quantum spread spectrum multiple access
- Spectral Shaping of Cascade Emissions from Multiplexed Cold Atomic Ensembles
- Generation of frequency sidebands on single photons with indistinguishability from quantum dots
- Time-Resolved Detection of Photon-Surface-Plasmon Coupling at the Single-Quanta Level
- Reconfigurable frequency coding of triggered single photons in the telecom C--band
- Simple quantum password checking