Sequential generation of multiphoton entanglement with a Rydberg superatom
arXiv:2112.09447 · doi:10.1038/s41566-022-01054-3
Abstract
Multiqubit entanglement is an indispensable resource for quantum information science. In particular, the entanglement of photons is of conceptual interest due to its implications in measurement-based quantum computing, communication, and metrology. The traditional way of spontaneous parametric down-conversion already demonstrates entanglement of up to a dozen photons but is hindered by its probabilistic nature. Here, we experimentally demonstrate an efficient approach for multi-photon generation with a Rydberg superatom, a mesoscopic atomic ensemble under Rydberg blockade. Using it as an efficient single-photon interface, we iterate the photon creation process that gives rise to a train of temporal photonic modes entangled in photon number degree. We detect the multiphoton entanglement via converting the photon number degree to a time-bin degree. Photon correlations verify entanglement up to 12 modes. The efficiency scaling factor for adding one photon is 0.27, surpassing previous results, and can be increased significantly without fundamental limitations.
11 pages, 9 figures
References in corpus (7)
- Entanglement detection
- Deterministic Generation of a Cluster State of Entangled Photons
- A photonic cluster state machine gun
- Distributed quantum phase estimation with entangled photons
- Optically generated 2-dimensional photonic cluster state from coupled quantum dots
- Realizing a Deterministic Source of Multipartite-Entangled Photonic Qubits
- Single-shot measurement of a Rydberg superatom via collective photon burst
Cited by in corpus (31)
- Rydberg superatoms: An artificial quantum system for quantum information processing and quantum optics
- Probing quantum correlations in many-body systems: a review of scalable methods
- Fusion of deterministically generated photonic graph states
- High-threshold quantum computing by fusing one-dimensional cluster states
- Experimental Generation of Spin-Photon Entanglement in Silicon Carbide
- Entanglement filter with Rydberg atoms
- Quantum vortices of strongly interacting photons
- Deterministic and reconfigurable graph state generation with a single solid-state quantum emitter
- Quantum Optics with Rydberg Superatoms
- Continuous and deterministic all-photonic cluster state of indistinguishable photons
- Anonymous conference key agreement in linear quantum networks
- Photon-mediated dipole-dipole interactions as a resource for quantum science and technology in cold atoms
- Optimization of deterministic photonic graph state generation via local operations
- Generating scalable graph states in an atom-nanophotonic interface
- Energy-efficient quantum non-demolition measurement with a spin-photon interface
- Symmetric quantum states: a review of recent progress
- Generation of complete graph states in a spin- Heisenberg chain with a globally optimized magnetic field
- Gottesman-Kitaev-Preskill encoding in continuous modal variables of single photons
- Strong single-photon to two-photon bundles emission in spin-1 Jaynes-Cummings model
- Controlled remote implementation of operations via graph states
- Continuously tunable single-photon level nonlinearity with Rydberg state wave-function engineering
- Long-lived collective Rydberg excitations in atomic gas achieved via ac-Stark lattice modulation
- -photon bundles emission in high-spin Jaynes-Cummings model
- Efficient generation of entangled multi-photon graph states from a single atom
- Tripartite multiphoton Jaynes-Cummings model: Analytical solution and Wigner nonclassicalities
- All-optical ultrafast arbitrary rotation of hole orbital qubits with direct phase control
- Atom-mediated deterministic generation and stitching of photonic graph states
- Improving quantum metrology protocols with programmable photonic circuits
- Scalable and modular generation of multipartite entangled states through memory-enhanced fusion
- Towards practical secure delegated quantum computing with semi-classical light
- Accelerated Rydberg electromagnetically induced transparency quantum memory via shortcuts to adiabaticity