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20242026
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quant-ph2026

Telecom-compatible polarization-to-time-bin conversion of atom-photon entanglement for heterogeneous quantum networks

Christian Haen, Julian Groß-Funk, Max Bergerhoff +5

A key enabling feature of future quantum networks is interoperability between platforms that operate at different wavelengths and with different qubit encodings. We demonstrate an…

quant-ph2026

Highly indistinguishable photons from a tin-vacancy spin qubit in diamond

Dennis Herrmann, Robert Morsch-Golsong, Tobias Bauer +9

Quantum networks promise secure communication, distributed sensing and modular quantum computing by interconnecting distant quantum nodes through photonic links. Extending such net…

quant-ph2026

Quantum repeater segment with free-space coupled co-trapped ions using telecom photon interference

Max Bergerhoff, Pascal Baumgart, Christian Haen +5

A quantum repeater segment is a basic building block of a quantum repeater, generating buffered entanglement of quantum memories to connect quantum repeater cells. It also enables…

quant-ph2024

Quantum Teleportation with Telecom Photons from Remote Quantum Emitters

Tim Strobel, Michal Vyvlecka, Ilenia Neureuther +13

The quest for a global quantum internet is based on the realization of a scalable network which requires quantum hardware with exceptional performance. Among them are quantum light…

quant-ph2024

High fidelity distribution of triggered polarization-entangled telecom photons via a 36km intra-city fiber network

Tim Strobel, Stefan Kazmaier, Tobias Bauer +16

Fiber-based distribution of triggered, entangled, single-photon pairs is a key requirement for the future development of terrestrial quantum networks. In this context, semiconducto…