activity
20182025
most citedNondestructive detection of photonic qubits

77 citations · 80 across the 2 of their papers we have counts for

collaborators

11 papers

quant-ph2026

Metropolitan entanglement distribution between an atom and a near-visible photon

Maya Büki, Pooja Malik, Florian Fertig +9

Entanglement distribution is the overarching purpose of quantum networks. While communication over long distances can use deployed fiber infrastructure, it requires photons in the…

quant-ph2026

Efficient entanglement of three remote single-atom quantum-network nodes

Matthias Seubert, Leonardo Ruscio, Tobias Frank +6

Entanglement distributed over a set of individually addressable qubit nodes is the enabling resource for a plethora of applications ranging from tests of quantum physics to secure…

quant-ph2025

A source of heralded atom-photon entanglement for quantum networking

Gianvito Chiarella, Tobias Frank, Leart Zuka +2

Communication in quantum networks suffers notoriously from photon loss. Resulting errors can be mitigated with a suitable measurement herald at the receiving node. However, waiting…

quant-ph20253 cited

Two-cavity-mediated photon-pair emission by one atom

Gianvito Chiarella, Tobias Frank, Pau Farrera +1

Photon-pair sources are widely used in quantum optics and quantum information experiments. Despite their broad deployment, there has not yet been an on-demand implementation with e…

quant-ph202177 cited

Nondestructive detection of photonic qubits

Dominik Niemietz, Pau Farrera, Stefan Langenfeld +1

One of the biggest challenges in experimental quantum information is to keep the fragile superposition state of a qubit alive. Long lifetimes can be achieved for material qubit car…

quant-ph2020

Transient dynamics of the quantum light retrieved from Rydberg polaritons

Auxiliadora Padrón-Brito, Roberto Tricarico, Pau Farrera +4

We study the photon statistics of weak coherent pulses propagating through a cold Rydberg atomic ensemble in the regime of Rydberg electromagnetically induced transparency. We show…