most citedQuantum Frequency Conversion of Single Photons from a Tin-Vacancy Center in Diamond

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quant-ph20251 cited

Quantum Frequency Conversion of Single Photons from a Tin-Vacancy Center in Diamond

Julia M. Brevoord, Jan Fabian Geus, Tim Turan +7

Diamond tin-vacancy (SnV) centers are promising candidates for building quantum network nodes. However, their native photon emission at 619 nm is incompatible with metropolitan-sca…

quant-ph2025

Spin-Photon Correlations from a Purcell-enhanced Diamond Nitrogen-Vacancy Center Coupled to an Open Microcavity

Julius Fischer, Yanik Herrmann, Cornelis F. J. Wolfs +3

An efficient interface between a spin qubit and single photons is a key enabling system for quantum science and technology. We report on a coherently controlled diamond nitrogen-va…

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-ph2025

Large-Range Tuning and Stabilization of the Optical Transition of Diamond Tin-Vacancy Centers by In-Situ Strain Control

Julia M. Brevoord, Leonardo G. C. Wienhoven, Nina Codreanu +10

The negatively charged tin-vacancy (SnV-) center in diamond has emerged as a promising platform for quantum computing and quantum networks. To connect SnV- qubits in large networks…

quant-ph2024

Control of solid-state nuclear spin qubits using an electron spin-1/2

Hans K. C. Beukers, Christopher Waas, Matteo Pasini +8

Solid-state quantum registers consisting of optically active electron spins with nearby nuclear spins are promising building blocks for future quantum technologies. For electron sp…