Spectral compression of single photons
arXiv:1308.0069 · doi:10.1038/nphoton.2013.47
Abstract
Photons are critical to quantum technologies since they can be used for virtually all quantum information tasks: in quantum metrology, as the information carrier in photonic quantum computation, as a mediator in hybrid systems, and to establish long distance networks. The physical characteristics of photons in these applications differ drastically; spectral bandwidths span 12 orders of magnitude from 50 THz for quantum-optical coherence tomography to 50 Hz for certain quantum memories. Combining these technologies requires coherent interfaces that reversibly map centre frequencies and bandwidths of photons to avoid excessive loss. Here we demonstrate bandwidth compression of single photons by a factor 40 and tunability over a range 70 times that bandwidth via sum-frequency generation with chirped laser pulses. This constitutes a time-to-frequency interface for light capable of converting time-bin to colour entanglement and enables ultrafast timing measurements. It is a step toward arbitrary waveform generation for single and entangled photons.
6 pages (4 figures) + 6 pages (3 figures)
References in corpus (4)
- Entanglement-free Heisenberg-limited phase estimation
- Quantum Memories. A Review based on the European Integrated Project "Qubit Applications (QAP)"
- Quantum Frequency Translation of Single-Photon States in Photonic Crystal Fiber
- A Quantum Pulse Gate based on Spectrally Engineered Sum Frequency Generation
Cited by in corpus (45)
- Quantum memories: emerging applications and recent advances
- Bandwidth manipulation of quantum light by an electro-optic time lens
- Large-Alphabet Time-Frequency Entangled Quantum Key Distribution by means of Time-to-Frequency Conversion
- Tailoring nonlinear processes for quantum optics with pulsed temporal-mode encodings
- Polarization insensitive frequency conversion for an atom-photon entanglement distribution via a telecom network
- Coherent ultrafast measurement of time-bin encoded photons
- Spectral shearing of quantum light pulses by electro-optic phase modulation
- Highly efficient frequency conversion with bandwidth compression of quantum light
- Spectral control of nonclassical light using an integrated thin-film lithium niobate modulator
- Spectrally reconfigurable quantum emitters enabled by optimized fast modulation
- Quantum optical signal processing in diamond
- Deterministic reshaping of single-photon spectra using cross-phase modulation
- Interfacing picosecond and nanosecond quantum light pulses
- Temporal and spectral manipulations of correlated photons using a time-lens
- Coherent perfect absorption of path entangled single photons
- Non-linear photon subtraction from a multimode quantum field
- Spectrally engineering photonic entanglement with a time lens
- Space-time duality and quantum temporal imaging
- Efficient polarisation-preserving frequency conversion from a trapped-ion-compatible wavelength to the telecom C band
- Theory of high-efficiency sum-frequency generation for single-photon waveform conversion
- Ultrafast time-division demultiplexing of polarization-entangled photons
- Large-scale spectral bandwidth compression by complex electro-optic temporal phase modulation
- Linear Optical Quantum Computation with Frequency-Comb Qubits and Passive Devices
- Quantum temporal imaging: application of a time lens to quantum optics
- Aperiodic electro-optic time lens for spectral manipulation of single-photon pulses
- Spectral broadening and shaping of nanosecond pulses: towards shaping of single photons from quantum emitters
- Nonlinear Domain Engineering for Quantum Technologies
- Hyper-entanglement between pulse modes and frequency bins
- Programmable optical waveform reshaping on a picosecond timescale
- Spectral Compression of Narrowband Single Photons with a Resonant Cavity
- Streak-camera measurements of single photons at telecom wavelength
- All-optical tailoring of single-photon spectra in a quantum-dot microcavity system
- Single-photon frequency conversion in nonlinear crystals
- Group-velocity symmetry in photonic crystal fibre for ultra-tunable quantum frequency conversion
- Time Reversal of Arbitrary Photonic Temporal Modes via Nonlinear Optical Frequency Conversion
- Erecting time telescope for photonic quantum networks
- Floquet Engineering and Harnessing Giant Atoms in Frequency-Comb Emission and Bichromatic Correlations in Waveguide QED
- Interferometric sorting of temporal Hermite-Gauss modes via temporal Gouy phase
- Temporal modulation of a spectral compressor for efficient quantum storage
- Aberration-optimized electro-optic time lens with a tunable aperture
- Size-Reduction of Rydberg collective excited states in cold atomic system
- Frequency manipulation of light by photonic gauge potentials
- Time-resolved second-order autocorrelation function of parametric downconversion
- Toward quantum interconnects featuring nanometer-to-picometer bandwidth compression and THz-range quantum frequency conversion
- Spectral compression of single-photon-level laser pulse