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Quantum Algorithms
Two-colour high-purity Einstein-Podolsky-Rosen photonic state
arXiv
Authors: Tulio Brito Brasil, Valeriy Novikov, Hugo Kerdoncuff, Mikael Lassen, Eugene Polzik
Year
2021
Paper ID
61086
Status
Preprint
Abstract Read
~2 min
Abstract Words
159
Citations
N/A
Abstract
Entanglement is the backbone of quantum information science and its applications. Entangled states of light are necessary for distributed quantum protocols, quantum sensing and quantum internet. A distributed quantum network requires entanglement between light modes of different colours optimized for interaction with the nodes as well as for communication between them. Here we demonstrate a high-purity Einstein-Podolsky-Rosen (EPR) entangled state between light modes with the wavelengths separated by more than 200 nm. The modes display -7.7pm0.5 dB of two-mode entanglement and an overall state purity of 0.63pm0.16. Entanglement is observed over five octaves of sideband frequencies from rf down to audio-band. In the context of two-colour entanglement, the demonstrated combination of high state purity, strong entanglement, and extended frequency range paves the way to new matter-light quantum protocols, such as teleportation between disparate quantum systems, quantum sensing and quantum-enhanced gravitational wave interferometry. The scheme demonstrated here can be readily applied towards entanglement between telecom wavelengths and atomic quantum memories.
Why This Paper Matters
- It adds a 2021 reference point for readers tracking recent quantum research.
- Entanglement is the backbone of quantum information science and its applications.
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