5 papers
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…
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…
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…
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…
Design and demonstration of an operating system for executing applications on quantum network nodes
Carlo Delle Donne, Mariagrazia Iuliano, Bart van der Vecht +22
The goal of future quantum networks is to enable new internet applications that are impossible to achieve using solely classical communication. Up to now, demonstrations of quantum…