Limits on the heralding efficiencies and spectral purities of spectrally-filtered single photons from photon pair sources
arXiv:1702.05501 · doi:10.1103/PhysRevA.95.061803
Abstract
Photon pairs produced by parametric down-conversion or four-wave mixing can interfere with each other in multiport interferometers, or carry entanglement between distant nodes for use in entanglement swapping. This requires the photons be spectrally pure to ensure good interference, and have high heralding efficiency to know accurately the number of photons involved and to maintain high rates as the number of photons grows. Spectral filtering is often used to remove noise and define spectral properties. For heralded single photons high purity and heralding efficiency is possible by filtering the heralding arm, but when both photons in typical pair sources are filtered, we show that the heralding efficiency of one or both of the photons is strongly reduced even by ideal spectral filters with 100% transmission in the passband: any improvement in reduced-state spectral purity from filtering comes at the cost of lowered heralding efficiency. We consider the fidelity to a pure, lossless single photon, symmetrize it to include both photons of the pair, and show this quantity is intrinsically limited for sources with spectral correlation. We then provide a framework for this effect for benchmarking common photon pair sources, and present an experiment where we vary the photon filter bandwidths and measure the increase in purity and corresponding reduction in heralding efficiency.
11 pages, 7 figures, cleaned up refs. and added ref. [47]
References in corpus (26)
- Device-independent security of quantum cryptography against collective attacks
- Free-Space distribution of entanglement and single photons over 144 km
- Quantum teleportation using active feed-forward between two Canary Islands
- Heralded Generation of Ultrafast Single Photons in Pure Quantum States
- How good must single photon sources and detectors be for efficient linear optical quantum computation?
- A bright, pulsed two-mode squeezer
- A Quantum Pulse Gate based on Spectrally Engineered Sum Frequency Generation
- Photon pair-state preparation with tailored spectral properties by spontaneous four-wave mixing in photonic-crystal fiber
- Tailored photon-pair generation in optical fibers
- Fiber-assisted single-photon spectrograph
- Multi-photon quantum interference in a multi-port integrated photonic device
- High purity bright single photon source
- Conditional preparation of single photons using parametric downconversion: A recipe for purity
- Bright source of spectrally uncorrelated polarization-entangled photons with nearly single-mode emission
- Nonclassical 2-photon interference with separate intrinsically narrowband fibre sources
- Feasibility of 300 km Quantum Key Distribution with Entangled States
- Highly efficient entanglement swapping and teleportation at telecom wavelength
- Pulsed source of spectrally uncorrelated and indistinguishable photons at telecom wavelengths
- Observation of Ten-photon Entanglement Using Thin BiBO Crystals
- Experimental demonstration of phase measurement precision beating standard quantum limit by projection measurement
- Accessing the purity of a single photon by the width of the Hong-Ou-Mandel interference
- Theory of cavity-enhanced spontaneous parametric downconversion
- On the Purity and Indistinguishability of Down-Converted Photons
- Heralding Single Photons Without Spectral Factorability
- The effect of self- and cross-phase modulation on photon-pairs generated by spontaneous four-wave mixing in integrated optical waveguides
- Linear optical quantum computation with imperfect entangled photon-pair sources and inefficient non-photon-number-resolving detectors
Cited by in corpus (45)
- Photonic quantum information processing: a concise review
- Near-ideal spontaneous photon sources in silicon quantum photonics
- Tailoring nonlinear processes for quantum optics with pulsed temporal-mode encodings
- Independent high-purity photons created in domain-engineered crystals
- High-performance source of spectrally pure, polarization entangled photon pairs based on hybrid integrated-bulk optics
- Spectrally separable photon-pair generation in dispersion engineered thin-film lithium niobate
- High efficiency 'plug & play' source of heralded single photons
- Design Considerations for High-purity Heralded Single Photon Sources
- Heralded generation of high-purity ultrashort single photons in programmable temporal shapes
- On the scalability of parametric down-conversion for generating higher-order Fock states
- On-chip quantum interference between the origins of a multi-photon state
- Theoretical investigation of a spectrally pure-state generation from isomorphs of KDP crystal at near-infrared and telecom wavelengths
- Measuring the joint spectral mode of photon pairs using intensity interferometry
- Waveguided sources of consistent, single-temporal-mode squeezed light: the good, the bad, and the ugly
- Degenerate Squeezing in Waveguides: A Unified Theoretical Approach
- Improving SPDC single-photon sources via extended heralding and feed-forward control
- Testing multi-photon interference on a silicon chip
- The effects of filtering on the purity of heralded single photons from parametric sources
- Numerical Investigation of Photon-Pair Generation in Periodically Poled MTiOXO4 (M = K, Rb, Cs; X = P, As)
- Dual-Pump Approach to Photon-Pair Generation: Demonstration of Enhanced Characterization and Engineering Capabilities
- The time-dependent spectrum of a single photon and its POVM
- Optimizing spontaneous parametric down-conversion sources for boson sampling
- Orchestrating time and color: a programmable source of high-dimensional entanglement
- Nonlinear Domain Engineering for Quantum Technologies
- Spectrally uncorrelated biphotons generated from `the family of BBO crystal'
- Third order parametric downconversion: a stimulated approach
- Generation of a time-bin Greenberger--Horne--Zeilinger state with an optical switch
- Demonstration of Hong-Ou-Mandel interference in an LNOI directional coupler
- Spectral Compression of Narrowband Single Photons with a Resonant Cavity
- Mitigating indistinguishability issues in photon pair sources by delayed-pump Intermodal Four Wave Mixing
- Distributing Polarization Entangled Photon Pairs with High Rate over Long Distance through Standard Telecommunication Fiber
- Configurable heralded two-photon Fock-states on a chip
- Spontaneous Parametric Down-Conversion in asymmetric couplers: photon purity enhancement and intrinsic spectral filtering
- An Integrated Photon-Pair Source with Monolithic Piezoelectric Frequency Tunability
- Multi-photon interference in the spectral domain by direct heralding of superposition states
- Perfect pulsed inline twin-beam squeezers
- Pure-state photon-pair source with a long coherence time for large-scale quantum information processing
- Distinguishability theory for time-resolved photodetection and boson sampling
- Quantum imaging exploiting twisted photon pairs
- Steering nonlocality in high-speed telecommunication system without detection loophole
- From broadband biphotons to frequency combs via spectral compression with time-varying cavities
- Optimal filtering and generation of entangled photons for quantum applications in the presence of noise
- Optimized Spectral Purity of Heralded Single Photons at the Telecom O-Band
- On-Chip Generation of Co-Polarized and Spectrally Separable Photon Pairs
- Estimation of photon number distribution and derivative characteristics of photon-pair sources