Chen et al., 2023 - Google Patents
On-chip generation and collectively coherent control of the superposition of the whole family of Dicke statesChen et al., 2023
View PDF- Document ID
- 9457580114877543964
- Author
- Chen L
- Lu L
- Xia L
- Lu Y
- Zhu S
- Ma X
- Publication year
- Publication venue
- Physical Review Letters
External Links
Snippet
Integrated quantum photonics has recently emerged as a powerful platform for generating, manipulating, and detecting entangled photons. Multipartite entangled states lie at the heart of the quantum physics and are the key enabling resources for scalable quantum …
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L9/00—Cryptographic mechanisms or cryptographic arrangements for secret or secure communication
- H04L9/08—Key distribution or management, e.g. generation, sharing or updating, of cryptographic keys or passwords
- H04L9/0816—Key establishment, i.e. cryptographic processes or cryptographic protocols whereby a shared secret becomes available to two or more parties, for subsequent use
- H04L9/0852—Quantum cryptography
- H04L9/0858—Details about key distillation or coding, e.g. reconciliation, error correction, privacy amplification, polarisation coding or phase coding
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Erhard et al. | Advances in high-dimensional quantum entanglement | |
Zhang et al. | Spontaneous parametric down‐conversion sources for multiphoton experiments | |
Zhang et al. | Generation of multiphoton quantum states on silicon | |
Sun et al. | Experimental demonstration of non-bilocality with truly independent sources and strict locality constraints | |
Ma et al. | Experimental delayed-choice entanglement swapping | |
Lu et al. | Three-dimensional entanglement on a silicon chip | |
Chen et al. | On-chip generation and collectively coherent control of the superposition of the whole family of Dicke states | |
Moehring et al. | Quantum networking with photons and trapped atoms | |
Meyer-Scott et al. | Scalable generation of multiphoton entangled states by active feed-forward and multiplexing | |
Tashima et al. | Local expansion of photonic W state using a polarization-dependent beamsplitter | |
Jin et al. | Two-photon interference of weak coherent laser pulses recalled from separate solid-state quantum memories | |
Yan et al. | Novel high-speed polarization source for decoy-state BB84 quantum key distribution over free space and satellite links | |
Levonian et al. | Optical entanglement of distinguishable quantum emitters | |
Zhang et al. | Quantum photonic network on chip | |
Beukers et al. | Remote-entanglement protocols for stationary qubits with photonic interfaces | |
Peng et al. | Cloning of quantum entanglement | |
Zhang et al. | Experimental observation of the Leggett-Garg inequality violation in classical light | |
Pompili | Multi-Node Quantum Networks with Diamond Qubits | |
Lee et al. | Versatile Quantum State Generation and Manipulation in a Programmable Silicon-Photonic 4-Qubit System with High-Fidelity and Purity | |
Bhatia | Elementary tripartite quantum communication photonic network at the telecom wavelength | |
Tsujimoto et al. | Quantum state tomography of qudits via Hong-Ou-Mandel interference | |
Gao et al. | Demonstration of a photonic router via quantum walks | |
Zhang et al. | Generation of multiphoton entangled quantum states with a single silicon nanowire | |
Mikkelsen | Multiphoton and heralded entanglement sources for applications in quantum cryptography | |
Akel Abrahao | Frontiers of quantum optics: photonics tolls, computational complexity, quantum metrology, and quantum correlations |