Creation, storage, and on-demand release of optical quantum states with a negative Wigner function
arXiv:1309.3516 · doi:10.1103/PhysRevX.3.041028
Abstract
Highly nonclassical quantum states of light, characterized by Wigner functions with negative values, have been created so far only in a heralded fashion. In this case, the desired output emerges rarely and randomly from a quantum-state generator. An important example is the heralded production of high-purity single-photon states, typically based on some nonlinear optical interaction. In contrast, on-demand single-photon sources were also reported, exploiting the quantized level structure of matter systems. These sources, however, lead to highly impure output states, composed mostly of vacuum. While such impure states may still exhibit certain single-photon-like features such as anti-bunching, they are not enough nonclassical for advanced quantum information processing. On the other hand, the intrinsic randomness of pure, heralded states can be circumvented by first storing and then releasing them on demand. Here we propose such a controlled release, and we experimentally demonstrate it for heralded single photons. We employ two optical cavities, where the photons are both created and stored inside one cavity, and finally released through a dynamical tuning of the other cavity. We demonstrate storage times of up to 300 ns, while keeping the single-photon purity around 50% after storage. This is the first demonstration of a negative Wigner function at the output of an on-demand photon source or a quantum memory. In principle, our storage system is compatible with all kinds of nonclassical states, including those known to be essential for many advanced quantum information protocols.
14 pages, 5 figures
References in corpus (12)
- The Quantum Internet
- Generation of a superposition of odd photon number states for quantum information networks
- Reconstruction of non-classical cavity field states with snapshots of their decoherence
- Quantum Memories. A Review based on the European Integrated Project "Qubit Applications (QAP)"
- Progressive field-state collapse and quantum non-demolition photon counting
- A Single-Atom Quantum Memory
- Deterministic quantum teleportation of photonic quantum bits by a hybrid technique
- High quality asynchronous heralded single photon source at telecom wavelength
- Photonic crystal fibre source of photon pairs for quantum information processing
- Generating superposition of up-to three photons for continuous variable quantum information processing
- High purity bright single photon source
- Generation and characterization of resource state for nonlinear cubic phase gate
Cited by in corpus (43)
- Perspective: Toward large-scale fault-tolerant universal photonic quantum computing
- 3/4-efficient Bell measurement with passive linear optics and unentangled ancillae
- Implementation of a quantum cubic gate by adaptive non-Gaussian measurement
- Entanglement swapping between discrete and continuous variables
- Universal Quantum Computing with Measurement-Induced Continuous-Variable Gate Sequence in a Loop-Based Architecture
- Homodyne tomography of a single photon retrieved on demand from a cavity-enhanced cold atom memory
- Connecting heterogeneous quantum networks by hybrid entanglement swapping
- Synchronization of optical photons for quantum information processing
- Quantum non-Gaussian Depth of Single-Photon States
- Universal quantum computation with temporal-mode bilayer square lattices
- Zero-dynamics principle for perfect quantum memory in linear networks
- Quantum storage of single-photon and two-photon Fock states with an all-optical quantum memory
- Single-photon synchronization with a room-temperature atomic quantum memory
- Efficient backcasting search for optical quantum state synthesis
- All-optical storage of phase-sensitive quantum states of light
- Heralded creation of photonic qudits from parametric down conversion using linear optics
- The Wigner Current for Open Quantum Systems
- Noiseless conditional teleportation of a single photon
- All-optical quantum computing using cubic phase gates
- Squeezer-based pulsed optomechanical interface
- Numerical study of Wigner negativity in one-dimensional steady-state resonance fluorescence
- Quantum arbitrary waveform generator
- Purification of photon subtraction from continuous squeezed light by filtering
- Coherently opening a high-Q cavity
- Complete temporal mode characterization of non-Gaussian states by dual homodyne measurement
- Steady-state generation of negative-Wigner-function light using feedback
- Adaptive loop-based subtraction of a single photon from a traveling beam of light
- Generation of Highly Pure Single-Photon State at Telecommunication Wavelength
- Iterative tailoring of optical quantum states with homodyne measurements
- Generation of Schrödinger cat states through photon-assisted Landau-Zener-Stückelberg interferometry
- Direct observation of phase sensitive Hong-Ou-Mandel interference
- Switching-free time-domain optical quantum computation with quantum teleportation
- Active Temporal Multiplexing of Photons
- Toward deterministic sources: Photon generation in a fiber-cavity quantum memory
- Efficient detection of nonclassicality using moments of the Wigner function
- Low-Loss Polarization-Maintaining Optical Router for Photonic Quantum Information Processing
- Storage of telecom wavelength heralded single photons in a fiber cavity quantum memory
- Phase Locking between Two All-Optical Quantum Memories
- Measurement-based generation of shaped single photons and coherent state superpositions in optical cavities
- Continuous-mode multi-photon filtering
- Quantum non-Gaussian high Fock states of light pulses and their superpositions
- Continuous Generation and Stabilization of Mesoscopic Field Superposition States in a Quantum Circuit
- Storage of RF photons in minimal conditions