A long-distance quantum-capable internet testbed

Fuente: arXiv
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Autori principali: Du, Dounan, Castillo-Veneros, Leonardo, Cottrill, Dillion, Cui, Guo-Dong, Stankus, Paul, Katramatos, Dimitrios, Martínez-Rincón, Julián, Figueroa, Eden
Natura: Preprint
Pubblicazione: 2021
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author Du, Dounan
Castillo-Veneros, Leonardo
Cottrill, Dillion
Cui, Guo-Dong
Stankus, Paul
Katramatos, Dimitrios
Martínez-Rincón, Julián
Figueroa, Eden
author_facet Du, Dounan
Castillo-Veneros, Leonardo
Cottrill, Dillion
Cui, Guo-Dong
Stankus, Paul
Katramatos, Dimitrios
Martínez-Rincón, Julián
Figueroa, Eden
contents Building a Quantum Internet requires the development of innovative quantum-enabling networking architectures that integrate advanced communication systems with long-distance quantum communication hardware. Here, we present the implementation of a quantum-enabled internet prototype using a novel physics-centric stack-based quantum network paradigm to govern the dynamics of multiple light-matter Hamiltonians across distant nodes. We demonstrate this concept using a deployed large-scale intercity quantum network connecting laboratories at Stony Brook University and the Brookhaven National Laboratory. This network facilitates a fundamental long-distance quantum network service -that of high-visibility Hong-Ou-Mandel interference of telecom quantum states generated in two independent, telecom-compatible quantum light-matter interfaces separated by a distance of 158 km.
format Preprint
id arxiv_https___arxiv_org_abs_2101_12742
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle A long-distance quantum-capable internet testbed
Du, Dounan
Castillo-Veneros, Leonardo
Cottrill, Dillion
Cui, Guo-Dong
Stankus, Paul
Katramatos, Dimitrios
Martínez-Rincón, Julián
Figueroa, Eden
Quantum Physics
Building a Quantum Internet requires the development of innovative quantum-enabling networking architectures that integrate advanced communication systems with long-distance quantum communication hardware. Here, we present the implementation of a quantum-enabled internet prototype using a novel physics-centric stack-based quantum network paradigm to govern the dynamics of multiple light-matter Hamiltonians across distant nodes. We demonstrate this concept using a deployed large-scale intercity quantum network connecting laboratories at Stony Brook University and the Brookhaven National Laboratory. This network facilitates a fundamental long-distance quantum network service -that of high-visibility Hong-Ou-Mandel interference of telecom quantum states generated in two independent, telecom-compatible quantum light-matter interfaces separated by a distance of 158 km.
title A long-distance quantum-capable internet testbed
topic Quantum Physics
url https://arxiv.org/abs/2101.12742