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View article: Laser-cut patterned, micrometer-thin diamond membranes with coherent color centers for open microcavities
Laser-cut patterned, micrometer-thin diamond membranes with coherent color centers for open microcavities Open
Micrometer-scale thin diamond devices are key components for various quantum sensing and networking experiments, including the integration of color centers into optical microcavities. In this work, we introduce a laser-cutting method for p…
View article: Spin-Photon Correlations from a Purcell-enhanced Diamond Nitrogen-Vacancy Center Coupled to an Open Microcavity
Spin-Photon Correlations from a Purcell-enhanced Diamond Nitrogen-Vacancy Center Coupled to an Open Microcavity Open
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-vacancy center electron spin qubit that is optically interfac…
View article: A low-temperature tunable microcavity featuring high passive stability and microwave integration
A low-temperature tunable microcavity featuring high passive stability and microwave integration Open
Open microcavities offer great potential for the exploration and utilization of efficient spin-photon interfaces with Purcell-enhanced quantum emitters thanks to their large spectral and spatial tunability combined with high versatility of…