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most citedHigh-Speed Tunable Microcavities Coupled to Rare-Earth Quantum Emitters

3 citations · 3 across the 1 of their papers we have counts for

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quant-ph2025

Laser-cut Patterned, Micrometer-thin Diamond Membranes with Coherent Color Centers for Open Microcavities

Yanik Herrmann, Julia M. Brevoord, Julius Fischer +10

Micrometer-scale thin diamond devices are key components for various quantum sensing and networking experiments, including the integration of color centers into optical microcaviti…

quant-ph20242 cited

Two-Photon Interference of Photons from Remote Tin-Vacancy Centers in Diamond

Vladislav Bushmakin, Oliver von Berg, Colin Sauerzapf +8

Scalable quantum networks rely on optical connections between long-lived qubits to distribute entanglement. Tin vacancies in diamond have emerged as promising long-lived qubits, of…

quant-ph2024

A Low-Temperature Tunable Microcavity featuring High Passive Stability and Microwave Integration

Yanik Herrmann, Julius Fischer, Stijn Scheijen +9

Open microcavities offer great potential for the exploration and utilization of efficient spin-photon interfaces with Purcell-enhanced quantum emitters thanks to their large spectr…

quant-ph2023

Coherent Coupling of a Diamond Tin-Vacancy Center to a Tunable Open Microcavity

Yanik Herrmann, Julius Fischer, Julia M. Brevoord +8

Efficient coupling of optically active qubits to optical cavities is a key challenge for solid-state-based quantum optics experiments and future quantum technologies. Here we prese…

quant-ph20213 cited

High-Speed Tunable Microcavities Coupled to Rare-Earth Quantum Emitters

Kangwei Xia, Fiammetta Sardi, Colin Sauerzapf +6

Electro-optical control of on-chip photonic devices is an essential tool for efficient integrated photonics. Lithium niobate on insulator (LNOI) is an emerging platform for on-chip…