most citedQuantum communication networks with defects in silicon carbide

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quant-ph20266 cited

Quantum communication networks with defects in silicon carbide

Philipp Sohr, Philipp Koller, Sebastian Ecker +23

Quantum communication promises unprecedented capabilities enabled by the transmission of quantum states of light. However, current implementations face severe distance limitations…

quant-ph2024

Single V2 defect in 4H Silicon Carbide Schottky diode at low temperature

Timo Steidl, Pierre Kuna, Erik Hesselmeier-Hüttmann +10

Nanoelectrical and photonic integration of quantum optical components is crucial for scalable solid-state quantum technologies. Silicon carbide stands out as a material with mature…

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-ph2024

Quantum bit with telecom wave-length emission from a simple defect in Si

Peter Deák, Song Li, Adam Gali

Spin-to-photon interfaces from defects in silicon hold great promise towards realizing quantum repeaters with the combination of advanced semiconductor and photonics technologies.…

quant-ph2024

Hopping of the center-of-mass of single G centers in silicon-on-insulator

Alrik Durand, Yoann Baron, Péter Udvarhelyi +15

Among the wealth of single fluorescent defects recently detected in silicon, the G center catches interest for its telecom single-photon emission that could be coupled to a metasta…