Quantum optical memory for entanglement distribution

Y Lei, F Kimiaee Asadi, T Zhong, A Kuzmich, C Simon… - Optica, 2023 - opg.optica.org
Optical photons are powerful carriers of quantum information, which can be delivered in free
space by satellites or in fibers on the ground over long distances. Entanglement of quantum …

The evolution of quantum secure direct communication: on the road to the qinternet

D Pan, GL Long, L Yin, YB Sheng… - … Surveys & Tutorials, 2024 - ieeexplore.ieee.org
Communication security has to evolve to a higher plane in the face of the threat from the
massive computing power of the emerging quantum computers. Quantum secure direct …

Telecom-wavelength quantum repeater node based on a trapped-ion processor

V Krutyanskiy, M Canteri, M Meraner, J Bate… - Physical Review Letters, 2023 - APS
A quantum repeater node is presented based on trapped ions that act as single-photon
emitters, quantum memories, and an elementary quantum processor. The node's ability to …

Metropolitan-scale heralded entanglement of solid-state qubits

AJ Stolk, KL van der Enden, MC Slater… - Science …, 2024 - science.org
A key challenge toward future quantum internet technology is connecting quantum
processors at metropolitan scale. Here, we report on heralded entanglement between two …

Scalable fault-tolerant quantum technologies with silicon color centers

S Simmons - PRX Quantum, 2024 - APS
The scaling barriers currently faced by both quantum networking and quantum computing
technologies ultimately amount to the same core challenge of distributing high-quality …

Realization of a crosstalk-avoided quantum network node using dual-type qubits of the same ion species

L Feng, YY Huang, YK Wu, WX Guo, JY Ma… - Nature …, 2024 - nature.com
Generating ion-photon entanglement is a crucial step for scalable trapped-ion quantum
networks. To avoid the crosstalk on memory qubits carrying quantum information, it is …

Rapid exchange cooling with trapped ions

SD Fallek, VS Sandhu, RA McGill, JM Gray… - Nature …, 2024 - nature.com
The trapped-ion quantum charge-coupled device (QCCD) architecture is a leading
candidate for advanced quantum information processing. In current QCCD implementations …

Fast Photon-Mediated Entanglement of Continuously Cooled Trapped Ions for Quantum Networking

J O'Reilly, G Toh, I Goetting, S Saha, M Shalaev… - Physical Review Letters, 2024 - APS
We entangle two cotrapped atomic barium ion qubits by collecting single visible photons
from each ion through in vacuo 0.8 NA objectives, interfering them through an integrated …

Multimode ion-photon entanglement over 101 kilometers

V Krutyanskiy, M Canteri, M Meraner, V Krcmarsky… - PRX Quantum, 2024 - APS
A three-qubit quantum network node based on trapped atomic ions is presented. The ability
to establish entanglement between each individual qubit in the node and a separate photon …

Verifiable blind quantum computing with trapped ions and single photons

P Drmota, DP Nadlinger, D Main, BC Nichol… - Physical Review Letters, 2024 - APS
We report the first hybrid matter-photon implementation of verifiable blind quantum
computing. We use a trapped-ion quantum server and a client-side photonic detection …