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20232026
most citedHigh fidelity optical readout of a nuclear spin qubit in Silicon Carbide

1 citations · 2 across the 5 of their papers we have counts for

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quant-ph2026

Electrically tunable, two-photon interference from remote silicon-vacancy centers in industrial silicon carbide

Fedor Dzmitryevich Hrunski, Daniel Scheller, Maximilian Hollendonner +8

Distributed quantum networks rely on spatially separated, independently operated quantum systems as network nodes, whose emitted photons must be interfered with high visibility to…

quant-ph2026

Efficient formation and identification of single emitters in 4H-SiC following maskless heavy ion implantation

S. Eserin, L. K. S. Zimmermann, E. Schneider +12

Single photon emitters in silicon carbide (SiC) are a leading platform for scalable quantum technologies. Recent interest has focused on oxygen-vacancy-related emitters, which show…

quant-ph2026

RF-free driving of nuclear spins with color centers in silicon carbide

Raphael Wörnle, Jonathan Körber, Timo Steidl +5

Color centers that enable nuclear-spin control without RF fields offer a powerful route towards simplified and scalable quantum devices. Such capabilities are especially valuable f…

quant-ph20241 cited

Efficient nuclear spin - photon entanglement with optical routing

Javid Javadzade, Majid Zahedian, Florian Kaiser +2

Quantum networks and distributed quantum computers rely on entanglement generation between photons and long-lived quantum memories. For large-scale architectures, one of the most c…

quant-ph2024

Precise characterization of a silicon carbide waveguide fiber interface

Marcel Krumrein, Raphael Nold, Flavie Davidson-Marquis +13

Emitters in high refractive index materials like 4H-SiC suffer from reduced detection of photons because of losses caused by total internal reflection. Thus, integration into effic…

quant-ph20241 cited

High fidelity optical readout of a nuclear spin qubit in Silicon Carbide

Erik Hesselmeier, Oliver von Berg, Pierre Kuna +7

Quantum state readout is a key requirement for a successful qubit platform. In this work we demonstrate a high fidelity quantum state readout of a V2 center nuclear spin based on a…