collaborators

6 papers

quant-ph2025

Heralded entanglement of on-demand spin-wave solid-state quantum memories for multiplexed quantum network links

Jonathan Hänni, Alberto E. Rodríguez-Moldes, Félicien Appas +5

The ability to distribute heralded entanglement between distant matter nodes is a primitive for the implementation of large-scale quantum networks. Some of the most crucial require…

quant-ph2025

A solid-state temporally multiplexed quantum memory array at the single-photon level

Markus Teller, Susana Plascencia, Cristina Sastre Jachimska +2

The exploitation of multimodality in different degrees of freedom is one of the most promising ways to increase the rate of heralded entanglement between distant quantum nodes. In…

quant-ph2025

Collective vacuum-Rabi splitting with an atomic spin wave coupled to a cavity mode

Félix Hoffet, Alexey Vylegzhanin, Emanuele Distante +3

A promising platform for quantum information research relies on cavity coupled atomic spin-waves, enabling efficient operations such as quantum memories, quantum light generation a…

quant-ph2025

Quantum Frequency Conversion of -long Photons from the Visible to the Telecom-C-Band

Soeren Wengerowsky, Stefano Duranti, Lukas Heller +1

Quantum Frequency Conversion (QFC) is a widely used technique to interface atomic systems with the telecom band in order to facilitate propagation over longer distances in fiber. H…

quant-ph2025

Multimodal Purcell enhancement and optical coherence of Eu ions in a single nanoparticle coupled to a microcavity

Timon Eichhorn, Nicholas Jobbitt, Sören Bieling +8

Europium-doped nanocrystals constitute a promising material for a scalable future quantum computing platform. Long-lived nuclear spin states could serve as qubits addressed via coh…

quant-ph2025

Uniting Quantum Processing Nodes of Cavity-coupled Ions with Rare-earth Quantum Repeaters Using Single-photon Pulse Shaping Based on Atomic Frequency Comb

P. Cussenot, B. Grivet, B. P. Lanyon +4

We present an architecture for remotely connecting cavity-coupled trapped ions via a quantum repeater based on rare-earth-doped crystals. The main challenge for its realization lie…